Files
kernel_arpi/drivers/usb/core/hcd.c
Greg Kroah-Hartman 47c7e57022 Merge 5.15.61 into android14-5.15
Changes in 5.15.61
        Makefile: link with -z noexecstack --no-warn-rwx-segments
        x86: link vdso and boot with -z noexecstack --no-warn-rwx-segments
        Revert "pNFS: nfs3_set_ds_client should set NFS_CS_NOPING"
        scsi: Revert "scsi: qla2xxx: Fix disk failure to rediscover"
        pNFS/flexfiles: Report RDMA connection errors to the server
        NFSD: Clean up the show_nf_flags() macro
        nfsd: eliminate the NFSD_FILE_BREAK_* flags
        ALSA: usb-audio: Add quirk for Behringer UMC202HD
        ALSA: bcd2000: Fix a UAF bug on the error path of probing
        ALSA: hda/realtek: Add quirk for Clevo NV45PZ
        ALSA: hda/realtek: Add quirk for HP Spectre x360 15-eb0xxx
        wifi: mac80211_hwsim: fix race condition in pending packet
        wifi: mac80211_hwsim: add back erroneously removed cast
        wifi: mac80211_hwsim: use 32-bit skb cookie
        add barriers to buffer_uptodate and set_buffer_uptodate
        lockd: detect and reject lock arguments that overflow
        HID: hid-input: add Surface Go battery quirk
        HID: wacom: Only report rotation for art pen
        HID: wacom: Don't register pad_input for touch switch
        KVM: nVMX: Snapshot pre-VM-Enter BNDCFGS for !nested_run_pending case
        KVM: nVMX: Snapshot pre-VM-Enter DEBUGCTL for !nested_run_pending case
        KVM: SVM: Don't BUG if userspace injects an interrupt with GIF=0
        KVM: s390: pv: don't present the ecall interrupt twice
        KVM: x86: Split kvm_is_valid_cr4() and export only the non-vendor bits
        KVM: nVMX: Let userspace set nVMX MSR to any _host_ supported value
        KVM: nVMX: Account for KVM reserved CR4 bits in consistency checks
        KVM: nVMX: Inject #UD if VMXON is attempted with incompatible CR0/CR4
        KVM: x86: Mark TSS busy during LTR emulation _after_ all fault checks
        KVM: x86: Set error code to segment selector on LLDT/LTR non-canonical #GP
        KVM: nVMX: Always enable TSC scaling for L2 when it was enabled for L1
        KVM: x86: Tag kvm_mmu_x86_module_init() with __init
        KVM: x86: do not report preemption if the steal time cache is stale
        KVM: x86: revalidate steal time cache if MSR value changes
        riscv: set default pm_power_off to NULL
        ALSA: hda/conexant: Add quirk for LENOVO 20149 Notebook model
        ALSA: hda/cirrus - support for iMac 12,1 model
        ALSA: hda/realtek: Add quirk for another Asus K42JZ model
        ALSA: hda/realtek: Add a quirk for HP OMEN 15 (8786) mute LED
        tty: vt: initialize unicode screen buffer
        vfs: Check the truncate maximum size in inode_newsize_ok()
        fs: Add missing umask strip in vfs_tmpfile
        thermal: sysfs: Fix cooling_device_stats_setup() error code path
        fbcon: Fix boundary checks for fbcon=vc:n1-n2 parameters
        fbcon: Fix accelerated fbdev scrolling while logo is still shown
        usbnet: Fix linkwatch use-after-free on disconnect
        fix short copy handling in copy_mc_pipe_to_iter()
        crypto: ccp - Use kzalloc for sev ioctl interfaces to prevent kernel memory leak
        ovl: drop WARN_ON() dentry is NULL in ovl_encode_fh()
        parisc: Fix device names in /proc/iomem
        parisc: Drop pa_swapper_pg_lock spinlock
        parisc: Check the return value of ioremap() in lba_driver_probe()
        parisc: io_pgetevents_time64() needs compat syscall in 32-bit compat mode
        riscv:uprobe fix SR_SPIE set/clear handling
        dt-bindings: riscv: fix SiFive l2-cache's cache-sets
        RISC-V: kexec: Fixup use of smp_processor_id() in preemptible context
        RISC-V: Fixup get incorrect user mode PC for kernel mode regs
        RISC-V: Fixup schedule out issue in machine_crash_shutdown()
        RISC-V: Add modules to virtual kernel memory layout dump
        rtc: rx8025: fix 12/24 hour mode detection on RX-8035
        drm/gem: Properly annotate WW context on drm_gem_lock_reservations() error
        drm/shmem-helper: Add missing vunmap on error
        drm/vc4: hdmi: Disable audio if dmas property is present but empty
        drm/hyperv-drm: Include framebuffer and EDID headers
        drm/nouveau: fix another off-by-one in nvbios_addr
        drm/nouveau: Don't pm_runtime_put_sync(), only pm_runtime_put_autosuspend()
        drm/nouveau/acpi: Don't print error when we get -EINPROGRESS from pm_runtime
        drm/nouveau/kms: Fix failure path for creating DP connectors
        drm/amdgpu: Check BO's requested pinning domains against its preferred_domains
        drm/amdgpu: fix check in fbdev init
        bpf: Fix KASAN use-after-free Read in compute_effective_progs
        btrfs: reject log replay if there is unsupported RO compat flag
        mtd: rawnand: arasan: Fix clock rate in NV-DDR
        mtd: rawnand: arasan: Update NAND bus clock instead of system clock
        um: Remove straying parenthesis
        um: seed rng using host OS rng
        iio: fix iio_format_avail_range() printing for none IIO_VAL_INT
        iio: light: isl29028: Fix the warning in isl29028_remove()
        scsi: sg: Allow waiting for commands to complete on removed device
        scsi: qla2xxx: Fix incorrect display of max frame size
        scsi: qla2xxx: Zero undefined mailbox IN registers
        soundwire: qcom: Check device status before reading devid
        ksmbd: fix memory leak in smb2_handle_negotiate
        ksmbd: prevent out of bound read for SMB2_TREE_CONNNECT
        ksmbd: fix use-after-free bug in smb2_tree_disconect
        fuse: limit nsec
        fuse: ioctl: translate ENOSYS
        serial: mvebu-uart: uart2 error bits clearing
        md-raid: destroy the bitmap after destroying the thread
        md-raid10: fix KASAN warning
        mbcache: don't reclaim used entries
        mbcache: add functions to delete entry if unused
        media: [PATCH] pci: atomisp_cmd: fix three missing checks on list iterator
        ia64, processor: fix -Wincompatible-pointer-types in ia64_get_irr()
        PCI: Add defines for normal and subtractive PCI bridges
        powerpc/fsl-pci: Fix Class Code of PCIe Root Port
        powerpc/ptdump: Fix display of RW pages on FSL_BOOK3E
        powerpc/powernv: Avoid crashing if rng is NULL
        MIPS: cpuinfo: Fix a warning for CONFIG_CPUMASK_OFFSTACK
        coresight: Clear the connection field properly
        usb: typec: ucsi: Acknowledge the GET_ERROR_STATUS command completion
        USB: HCD: Fix URB giveback issue in tasklet function
        ARM: dts: uniphier: Fix USB interrupts for PXs2 SoC
        arm64: dts: uniphier: Fix USB interrupts for PXs3 SoC
        usb: dwc3: gadget: refactor dwc3_repare_one_trb
        usb: dwc3: gadget: fix high speed multiplier setting
        netfilter: nf_tables: do not allow SET_ID to refer to another table
        netfilter: nf_tables: do not allow CHAIN_ID to refer to another table
        netfilter: nf_tables: do not allow RULE_ID to refer to another chain
        netfilter: nf_tables: fix null deref due to zeroed list head
        epoll: autoremove wakers even more aggressively
        x86: Handle idle=nomwait cmdline properly for x86_idle
        arch: make TRACE_IRQFLAGS_NMI_SUPPORT generic
        arm64: Do not forget syscall when starting a new thread.
        arm64: fix oops in concurrently setting insn_emulation sysctls
        arm64: kasan: Revert "arm64: mte: reset the page tag in page->flags"
        ext2: Add more validity checks for inode counts
        sched/fair: Introduce SIS_UTIL to search idle CPU based on sum of util_avg
        genirq: Don't return error on missing optional irq_request_resources()
        irqchip/mips-gic: Only register IPI domain when SMP is enabled
        genirq: GENERIC_IRQ_IPI depends on SMP
        sched/core: Always flush pending blk_plug
        irqchip/mips-gic: Check the return value of ioremap() in gic_of_init()
        wait: Fix __wait_event_hrtimeout for RT/DL tasks
        ARM: dts: imx6ul: add missing properties for sram
        ARM: dts: imx6ul: change operating-points to uint32-matrix
        ARM: dts: imx6ul: fix keypad compatible
        ARM: dts: imx6ul: fix csi node compatible
        ARM: dts: imx6ul: fix lcdif node compatible
        ARM: dts: imx6ul: fix qspi node compatible
        ARM: dts: BCM5301X: Add DT for Meraki MR26
        ARM: dts: ux500: Fix Codina accelerometer mounting matrix
        ARM: dts: ux500: Fix Gavini accelerometer mounting matrix
        spi: synquacer: Add missing clk_disable_unprepare()
        ARM: OMAP2+: display: Fix refcount leak bug
        ARM: OMAP2+: pdata-quirks: Fix refcount leak bug
        ACPI: EC: Remove duplicate ThinkPad X1 Carbon 6th entry from DMI quirks
        ACPI: EC: Drop the EC_FLAGS_IGNORE_DSDT_GPE quirk
        ACPI: PM: save NVS memory for Lenovo G40-45
        ACPI: LPSS: Fix missing check in register_device_clock()
        ARM: dts: qcom: sdx55: Fix the IRQ trigger type for UART
        arm64: dts: qcom: ipq8074: fix NAND node name
        arm64: dts: allwinner: a64: orangepi-win: Fix LED node name
        ARM: shmobile: rcar-gen2: Increase refcount for new reference
        firmware: tegra: Fix error check return value of debugfs_create_file()
        hwmon: (dell-smm) Add Dell XPS 13 7390 to fan control whitelist
        hwmon: (sht15) Fix wrong assumptions in device remove callback
        PM: hibernate: defer device probing when resuming from hibernation
        selinux: fix memleak in security_read_state_kernel()
        selinux: Add boundary check in put_entry()
        kasan: test: Silence GCC 12 warnings
        drm/amdgpu: Remove one duplicated ef removal
        powerpc/64s: Disable stack variable initialisation for prom_init
        spi: spi-rspi: Fix PIO fallback on RZ platforms
        ARM: findbit: fix overflowing offset
        meson-mx-socinfo: Fix refcount leak in meson_mx_socinfo_init
        arm64: dts: renesas: beacon: Fix regulator node names
        spi: spi-altera-dfl: Fix an error handling path
        ARM: bcm: Fix refcount leak in bcm_kona_smc_init
        ACPI: processor/idle: Annotate more functions to live in cpuidle section
        ARM: dts: imx7d-colibri-emmc: add cpu1 supply
        soc: renesas: r8a779a0-sysc: Fix A2DP1 and A2CV[2357] PDR values
        scsi: hisi_sas: Use managed PCI functions
        dt-bindings: iio: accel: Add DT binding doc for ADXL355
        soc: amlogic: Fix refcount leak in meson-secure-pwrc.c
        arm64: dts: renesas: Fix thermal-sensors on single-zone sensors
        x86/pmem: Fix platform-device leak in error path
        ARM: dts: ast2500-evb: fix board compatible
        ARM: dts: ast2600-evb: fix board compatible
        ARM: dts: ast2600-evb-a1: fix board compatible
        arm64: dts: mt8192: Fix idle-states nodes naming scheme
        arm64: dts: mt8192: Fix idle-states entry-method
        arm64: select TRACE_IRQFLAGS_NMI_SUPPORT
        arm64: cpufeature: Allow different PMU versions in ID_DFR0_EL1
        locking/lockdep: Fix lockdep_init_map_*() confusion
        arm64: dts: qcom: sc7180: Remove ipa_fw_mem node on trogdor
        soc: fsl: guts: machine variable might be unset
        block: fix infinite loop for invalid zone append
        ARM: dts: qcom: mdm9615: add missing PMIC GPIO reg
        ARM: OMAP2+: Fix refcount leak in omapdss_init_of
        ARM: OMAP2+: Fix refcount leak in omap3xxx_prm_late_init
        arm64: dts: qcom: sdm630: disable GPU by default
        arm64: dts: qcom: sdm630: fix the qusb2phy ref clock
        arm64: dts: qcom: sdm630: fix gpu's interconnect path
        arm64: dts: qcom: sdm636-sony-xperia-ganges-mermaid: correct sdc2 pinconf
        cpufreq: zynq: Fix refcount leak in zynq_get_revision
        regulator: qcom_smd: Fix pm8916_pldo range
        ACPI: APEI: Fix _EINJ vs EFI_MEMORY_SP
        ARM: dts: qcom-msm8974: fix irq type on blsp2_uart1
        soc: qcom: ocmem: Fix refcount leak in of_get_ocmem
        soc: qcom: aoss: Fix refcount leak in qmp_cooling_devices_register
        ARM: dts: qcom: pm8841: add required thermal-sensor-cells
        bus: hisi_lpc: fix missing platform_device_put() in hisi_lpc_acpi_probe()
        stack: Declare {randomize_,}kstack_offset to fix Sparse warnings
        arm64: dts: qcom: msm8916: Fix typo in pronto remoteproc node
        ACPI: APEI: explicit init of HEST and GHES in apci_init()
        drivers/iio: Remove all strcpy() uses
        ACPI: VIOT: Fix ACS setup
        arm64: dts: qcom: sm6125: Move sdc2 pinctrl from seine-pdx201 to sm6125
        arm64: dts: qcom: sm6125: Append -state suffix to pinctrl nodes
        arm64: dts: qcom: sm8250: add missing PCIe PHY clock-cells
        arm64: dts: mt7622: fix BPI-R64 WPS button
        arm64: tegra: Fixup SYSRAM references
        arm64: tegra: Update Tegra234 BPMP channel addresses
        arm64: tegra: Mark BPMP channels as no-memory-wc
        arm64: tegra: Fix SDMMC1 CD on P2888
        erofs: avoid consecutive detection for Highmem memory
        blk-mq: don't create hctx debugfs dir until q->debugfs_dir is created
        spi: Fix simplification of devm_spi_register_controller
        spi: tegra20-slink: fix UAF in tegra_slink_remove()
        hwmon: (drivetemp) Add module alias
        blktrace: Trace remapped requests correctly
        PM: domains: Ensure genpd_debugfs_dir exists before remove
        dm writecache: return void from functions
        dm writecache: count number of blocks read, not number of read bios
        dm writecache: count number of blocks written, not number of write bios
        dm writecache: count number of blocks discarded, not number of discard bios
        regulator: of: Fix refcount leak bug in of_get_regulation_constraints()
        soc: qcom: Make QCOM_RPMPD depend on PM
        arm64: dts: qcom: qcs404: Fix incorrect USB2 PHYs assignment
        irqdomain: Report irq number for NOMAP domains
        drivers/perf: arm_spe: Fix consistency of SYS_PMSCR_EL1.CX
        nohz/full, sched/rt: Fix missed tick-reenabling bug in dequeue_task_rt()
        x86/extable: Fix ex_handler_msr() print condition
        selftests/seccomp: Fix compile warning when CC=clang
        thermal/tools/tmon: Include pthread and time headers in tmon.h
        dm: return early from dm_pr_call() if DM device is suspended
        pwm: sifive: Simplify offset calculation for PWMCMP registers
        pwm: sifive: Ensure the clk is enabled exactly once per running PWM
        pwm: sifive: Shut down hardware only after pwmchip_remove() completed
        pwm: lpc18xx-sct: Reduce number of devm memory allocations
        pwm: lpc18xx-sct: Simplify driver by not using pwm_[gs]et_chip_data()
        pwm: lpc18xx: Fix period handling
        drm/dp: Export symbol / kerneldoc fixes for DP AUX bus
        drm/bridge: tc358767: Move (e)DP bridge endpoint parsing into dedicated function
        ath10k: do not enforce interrupt trigger type
        drm/st7735r: Fix module autoloading for Okaya RH128128T
        drm/panel: Fix build error when CONFIG_DRM_PANEL_SAMSUNG_ATNA33XC20=y && CONFIG_DRM_DISPLAY_HELPER=m
        wifi: rtlwifi: fix error codes in rtl_debugfs_set_write_h2c()
        ath11k: fix netdev open race
        drm/mipi-dbi: align max_chunk to 2 in spi_transfer
        ath11k: Fix incorrect debug_mask mappings
        drm/radeon: fix potential buffer overflow in ni_set_mc_special_registers()
        drm/mediatek: Modify dsi funcs to atomic operations
        drm/mediatek: Separate poweron/poweroff from enable/disable and define new funcs
        drm/mediatek: Add pull-down MIPI operation in mtk_dsi_poweroff function
        drm/meson: encoder_hdmi: switch to bridge DRM_BRIDGE_ATTACH_NO_CONNECTOR
        drm/meson: encoder_hdmi: Fix refcount leak in meson_encoder_hdmi_init
        drm/bridge: lt9611uxc: Cancel only driver's work
        i2c: npcm: Remove own slave addresses 2:10
        i2c: npcm: Correct slave role behavior
        i2c: mxs: Silence a clang warning
        virtio-gpu: fix a missing check to avoid NULL dereference
        drm/shmem-helper: Unexport drm_gem_shmem_create_with_handle()
        drm/shmem-helper: Export dedicated wrappers for GEM object functions
        drm/shmem-helper: Pass GEM shmem object in public interfaces
        drm/virtio: Fix NULL vs IS_ERR checking in virtio_gpu_object_shmem_init
        drm: adv7511: override i2c address of cec before accessing it
        crypto: sun8i-ss - do not allocate memory when handling hash requests
        crypto: sun8i-ss - fix error codes in allocate_flows()
        net: fix sk_wmem_schedule() and sk_rmem_schedule() errors
        can: netlink: allow configuring of fixed bit rates without need for do_set_bittiming callback
        can: netlink: allow configuring of fixed data bit rates without need for do_set_data_bittiming callback
        i2c: Fix a potential use after free
        crypto: sun8i-ss - fix infinite loop in sun8i_ss_setup_ivs()
        media: atmel: atmel-sama7g5-isc: fix warning in configs without OF
        media: tw686x: Register the irq at the end of probe
        media: imx-jpeg: Correct some definition according specification
        media: imx-jpeg: Leave a blank space before the configuration data
        media: imx-jpeg: Add pm-runtime support for imx-jpeg
        media: imx-jpeg: use NV12M to represent non contiguous NV12
        media: imx-jpeg: Set V4L2_BUF_FLAG_LAST at eos
        media: imx-jpeg: Refactor function mxc_jpeg_parse
        media: imx-jpeg: Identify and handle precision correctly
        media: imx-jpeg: Handle source change in a function
        media: imx-jpeg: Support dynamic resolution change
        media: imx-jpeg: Align upwards buffer size
        media: imx-jpeg: Implement drain using v4l2-mem2mem helpers
        ath9k: fix use-after-free in ath9k_hif_usb_rx_cb
        wifi: iwlegacy: 4965: fix potential off-by-one overflow in il4965_rs_fill_link_cmd()
        drm/radeon: fix incorrrect SPDX-License-Identifiers
        rcutorture: Warn on individual rcu_torture_init() error conditions
        rcutorture: Don't cpuhp_remove_state() if cpuhp_setup_state() failed
        rcutorture: Fix ksoftirqd boosting timing and iteration
        test_bpf: fix incorrect netdev features
        crypto: ccp - During shutdown, check SEV data pointer before using
        drm: bridge: adv7511: Add check for mipi_dsi_driver_register
        media: imx-jpeg: Disable slot interrupt when frame done
        drm/mcde: Fix refcount leak in mcde_dsi_bind
        media: hdpvr: fix error value returns in hdpvr_read
        media: v4l2-mem2mem: prevent pollerr when last_buffer_dequeued is set
        media: driver/nxp/imx-jpeg: fix a unexpected return value problem
        media: tw686x: Fix memory leak in tw686x_video_init
        drm/vc4: plane: Remove subpixel positioning check
        drm/vc4: plane: Fix margin calculations for the right/bottom edges
        drm/bridge: Add a function to abstract away panels
        drm/vc4: dsi: Switch to devm_drm_of_get_bridge
        drm/vc4: Use of_device_get_match_data()
        drm/vc4: dsi: Release workaround buffer and DMA
        drm/vc4: dsi: Correct DSI divider calculations
        drm/vc4: dsi: Correct pixel order for DSI0
        drm/vc4: dsi: Register dsi0 as the correct vc4 encoder type
        drm/vc4: dsi: Fix dsi0 interrupt support
        drm/vc4: dsi: Add correct stop condition to vc4_dsi_encoder_disable iteration
        drm/vc4: hdmi: Fix HPD GPIO detection
        drm/vc4: hdmi: Avoid full hdmi audio fifo writes
        drm/vc4: hdmi: Reset HDMI MISC_CONTROL register
        drm/vc4: hdmi: Fix timings for interlaced modes
        drm/vc4: hdmi: Correct HDMI timing registers for interlaced modes
        crypto: arm64/gcm - Select AEAD for GHASH_ARM64_CE
        selftests/xsk: Destroy BPF resources only when ctx refcount drops to 0
        drm/rockchip: vop: Don't crash for invalid duplicate_state()
        drm/rockchip: Fix an error handling path rockchip_dp_probe()
        drm/mediatek: dpi: Remove output format of YUV
        drm/mediatek: dpi: Only enable dpi after the bridge is enabled
        drm: bridge: sii8620: fix possible off-by-one
        hinic: Use the bitmap API when applicable
        net: hinic: fix bug that ethtool get wrong stats
        net: hinic: avoid kernel hung in hinic_get_stats64()
        drm/msm/mdp5: Fix global state lock backoff
        crypto: hisilicon/sec - don't sleep when in softirq
        crypto: hisilicon - Kunpeng916 crypto driver don't sleep when in softirq
        media: platform: mtk-mdp: Fix mdp_ipi_comm structure alignment
        drm/msm: Avoid dirtyfb stalls on video mode displays (v2)
        drm/msm/dpu: Fix for non-visible planes
        mt76: mt76x02u: fix possible memory leak in __mt76x02u_mcu_send_msg
        mt76: mt7615: do not update pm stats in case of error
        ieee80211: add EHT 1K aggregation definitions
        mt76: mt7921: fix aggregation subframes setting to HE max
        mt76: mt7921: enlarge maximum VHT MPDU length to 11454
        mediatek: mt76: mac80211: Fix missing of_node_put() in mt76_led_init()
        mediatek: mt76: eeprom: fix missing of_node_put() in mt76_find_power_limits_node()
        skmsg: Fix invalid last sg check in sk_msg_recvmsg()
        drm/exynos/exynos7_drm_decon: free resources when clk_set_parent() failed.
        tcp: make retransmitted SKB fit into the send window
        libbpf: Fix the name of a reused map
        selftests: timers: valid-adjtimex: build fix for newer toolchains
        selftests: timers: clocksource-switch: fix passing errors from child
        bpf: Fix subprog names in stack traces.
        fs: check FMODE_LSEEK to control internal pipe splicing
        media: cedrus: h265: Fix flag name
        media: hantro: postproc: Fix motion vector space size
        media: hantro: Simplify postprocessor
        media: hevc: Embedded indexes in RPS
        media: staging: media: hantro: Fix typos
        wifi: wil6210: debugfs: fix info leak in wil_write_file_wmi()
        wifi: p54: Fix an error handling path in p54spi_probe()
        wifi: p54: add missing parentheses in p54_flush()
        selftests/bpf: fix a test for snprintf() overflow
        libbpf: fix an snprintf() overflow check
        can: pch_can: do not report txerr and rxerr during bus-off
        can: rcar_can: do not report txerr and rxerr during bus-off
        can: sja1000: do not report txerr and rxerr during bus-off
        can: hi311x: do not report txerr and rxerr during bus-off
        can: sun4i_can: do not report txerr and rxerr during bus-off
        can: kvaser_usb_hydra: do not report txerr and rxerr during bus-off
        can: kvaser_usb_leaf: do not report txerr and rxerr during bus-off
        can: usb_8dev: do not report txerr and rxerr during bus-off
        can: error: specify the values of data[5..7] of CAN error frames
        can: pch_can: pch_can_error(): initialize errc before using it
        Bluetooth: hci_intel: Add check for platform_driver_register
        i2c: cadence: Support PEC for SMBus block read
        i2c: mux-gpmux: Add of_node_put() when breaking out of loop
        wifi: wil6210: debugfs: fix uninitialized variable use in `wil_write_file_wmi()`
        wifi: iwlwifi: mvm: fix double list_add at iwl_mvm_mac_wake_tx_queue
        wifi: libertas: Fix possible refcount leak in if_usb_probe()
        media: cedrus: hevc: Add check for invalid timestamp
        net/mlx5e: Remove WARN_ON when trying to offload an unsupported TLS cipher/version
        net/mlx5e: Fix the value of MLX5E_MAX_RQ_NUM_MTTS
        net/mlx5: Adjust log_max_qp to be 18 at most
        crypto: hisilicon/hpre - don't use GFP_KERNEL to alloc mem during softirq
        crypto: inside-secure - Add missing MODULE_DEVICE_TABLE for of
        crypto: hisilicon/sec - fix auth key size error
        inet: add READ_ONCE(sk->sk_bound_dev_if) in INET_MATCH()
        ipv6: add READ_ONCE(sk->sk_bound_dev_if) in INET6_MATCH()
        net: allow unbound socket for packets in VRF when tcp_l3mdev_accept set
        netdevsim: fib: Fix reference count leak on route deletion failure
        wifi: rtw88: check the return value of alloc_workqueue()
        iavf: Fix max_rate limiting
        iavf: Fix 'tc qdisc show' listing too many queues
        netdevsim: Avoid allocation warnings triggered from user space
        net: rose: fix netdev reference changes
        net: ionic: fix error check for vlan flags in ionic_set_nic_features()
        dccp: put dccp_qpolicy_full() and dccp_qpolicy_push() in the same lock
        net: usb: make USB_RTL8153_ECM non user configurable
        wireguard: ratelimiter: use hrtimer in selftest
        wireguard: allowedips: don't corrupt stack when detecting overflow
        HID: amd_sfh: Don't show client init failed as error when discovery fails
        clk: renesas: r9a06g032: Fix UART clkgrp bitsel
        mtd: maps: Fix refcount leak in of_flash_probe_versatile
        mtd: maps: Fix refcount leak in ap_flash_init
        mtd: rawnand: meson: Fix a potential double free issue
        of: check previous kernel's ima-kexec-buffer against memory bounds
        scsi: qla2xxx: edif: Reduce Initiator-Initiator thrashing
        scsi: qla2xxx: edif: Fix potential stuck session in sa update
        scsi: qla2xxx: edif: Reduce connection thrash
        scsi: qla2xxx: edif: Fix inconsistent check of db_flags
        scsi: qla2xxx: edif: Synchronize NPIV deletion with authentication application
        scsi: qla2xxx: edif: Add retry for ELS passthrough
        scsi: qla2xxx: edif: Fix n2n discovery issue with secure target
        scsi: qla2xxx: edif: Fix n2n login retry for secure device
        KVM: SVM: Unwind "speculative" RIP advancement if INTn injection "fails"
        KVM: SVM: Stuff next_rip on emulated INT3 injection if NRIPS is supported
        phy: samsung: exynosautov9-ufs: correct TSRV register configurations
        PCI: microchip: Fix refcount leak in mc_pcie_init_irq_domains()
        PCI: tegra194: Fix PM error handling in tegra_pcie_config_ep()
        HID: cp2112: prevent a buffer overflow in cp2112_xfer()
        mtd: sm_ftl: Fix deadlock caused by cancel_work_sync in sm_release
        mtd: partitions: Fix refcount leak in parse_redboot_of
        mtd: parsers: ofpart: Fix refcount leak in bcm4908_partitions_fw_offset
        mtd: st_spi_fsm: Add a clk_disable_unprepare() in .probe()'s error path
        PCI: mediatek-gen3: Fix refcount leak in mtk_pcie_init_irq_domains()
        fpga: altera-pr-ip: fix unsigned comparison with less than zero
        usb: host: Fix refcount leak in ehci_hcd_ppc_of_probe
        usb: ohci-nxp: Fix refcount leak in ohci_hcd_nxp_probe
        usb: gadget: tegra-xudc: Fix error check in tegra_xudc_powerdomain_init()
        usb: xhci: tegra: Fix error check
        netfilter: xtables: Bring SPDX identifier back
        scsi: qla2xxx: edif: Send LOGO for unexpected IKE message
        scsi: qla2xxx: edif: Reduce disruption due to multiple app start
        scsi: qla2xxx: edif: Fix no login after app start
        scsi: qla2xxx: edif: Tear down session if keys have been removed
        scsi: qla2xxx: edif: Fix session thrash
        scsi: qla2xxx: edif: Fix no logout on delete for N2N
        iio: accel: bma400: Fix the scale min and max macro values
        platform/chrome: cros_ec: Always expose last resume result
        iio: accel: bma400: Reordering of header files
        clk: mediatek: reset: Fix written reset bit offset
        lib/test_hmm: avoid accessing uninitialized pages
        memremap: remove support for external pgmap refcounts
        mm/memremap: fix memunmap_pages() race with get_dev_pagemap()
        KVM: Don't set Accessed/Dirty bits for ZERO_PAGE
        mwifiex: Ignore BTCOEX events from the 88W8897 firmware
        mwifiex: fix sleep in atomic context bugs caused by dev_coredumpv
        scsi: iscsi: Allow iscsi_if_stop_conn() to be called from kernel
        scsi: iscsi: Add helper to remove a session from the kernel
        scsi: iscsi: Fix session removal on shutdown
        dmaengine: dw-edma: Fix eDMA Rd/Wr-channels and DMA-direction semantics
        mtd: dataflash: Add SPI ID table
        clk: qcom: camcc-sm8250: Fix halt on boot by reducing driver's init level
        misc: rtsx: Fix an error handling path in rtsx_pci_probe()
        driver core: fix potential deadlock in __driver_attach
        clk: qcom: clk-krait: unlock spin after mux completion
        clk: qcom: gcc-msm8939: Add missing SYSTEM_MM_NOC_BFDCD_CLK_SRC
        clk: qcom: gcc-msm8939: Fix bimc_ddr_clk_src rcgr base address
        clk: qcom: gcc-msm8939: Add missing system_mm_noc_bfdcd_clk_src
        clk: qcom: gcc-msm8939: Point MM peripherals to system_mm_noc clock
        usb: host: xhci: use snprintf() in xhci_decode_trb()
        RDMA/rxe: Fix deadlock in rxe_do_local_ops()
        clk: qcom: ipq8074: fix NSS core PLL-s
        clk: qcom: ipq8074: SW workaround for UBI32 PLL lock
        clk: qcom: ipq8074: fix NSS port frequency tables
        clk: qcom: ipq8074: set BRANCH_HALT_DELAY flag for UBI clocks
        clk: qcom: camcc-sdm845: Fix topology around titan_top power domain
        clk: qcom: camcc-sm8250: Fix topology around titan_top power domain
        clk: qcom: clk-rcg2: Fail Duty-Cycle configuration if MND divider is not enabled.
        clk: qcom: clk-rcg2: Make sure to not write d=0 to the NMD register
        mm/mempolicy: fix get_nodes out of bound access
        PCI: dwc: Stop link on host_init errors and de-initialization
        PCI: dwc: Add unroll iATU space support to dw_pcie_disable_atu()
        PCI: dwc: Disable outbound windows only for controllers using iATU
        PCI: dwc: Set INCREASE_REGION_SIZE flag based on limit address
        PCI: dwc: Deallocate EPC memory on dw_pcie_ep_init() errors
        PCI: dwc: Always enable CDM check if "snps,enable-cdm-check" exists
        soundwire: bus_type: fix remove and shutdown support
        soundwire: revisit driver bind/unbind and callbacks
        KVM: arm64: Don't return from void function
        dmaengine: sf-pdma: Add multithread support for a DMA channel
        PCI: endpoint: Don't stop controller when unbinding endpoint function
        scsi: qla2xxx: Check correct variable in qla24xx_async_gffid()
        intel_th: Fix a resource leak in an error handling path
        intel_th: msu-sink: Potential dereference of null pointer
        intel_th: msu: Fix vmalloced buffers
        binder: fix redefinition of seq_file attributes
        staging: rtl8192u: Fix sleep in atomic context bug in dm_fsync_timer_callback
        mmc: sdhci-of-esdhc: Fix refcount leak in esdhc_signal_voltage_switch
        mmc: mxcmmc: Silence a clang warning
        mmc: renesas_sdhi: Get the reset handle early in the probe
        memstick/ms_block: Fix some incorrect memory allocation
        memstick/ms_block: Fix a memory leak
        mmc: sdhci-of-at91: fix set_uhs_signaling rewriting of MC1R
        of: device: Fix missing of_node_put() in of_dma_set_restricted_buffer
        mmc: block: Add single read for 4k sector cards
        KVM: s390: pv: leak the topmost page table when destroy fails
        PCI/portdrv: Don't disable AER reporting in get_port_device_capability()
        PCI: qcom: Set up rev 2.1.0 PARF_PHY before enabling clocks
        scsi: smartpqi: Fix DMA direction for RAID requests
        xtensa: iss/network: provide release() callback
        xtensa: iss: fix handling error cases in iss_net_configure()
        usb: gadget: udc: amd5536 depends on HAS_DMA
        usb: aspeed-vhub: Fix refcount leak bug in ast_vhub_init_desc()
        usb: dwc3: core: Deprecate GCTL.CORESOFTRESET
        usb: dwc3: core: Do not perform GCTL_CORE_SOFTRESET during bootup
        usb: dwc3: qcom: fix missing optional irq warnings
        eeprom: idt_89hpesx: uninitialized data in idt_dbgfs_csr_write()
        phy: stm32: fix error return in stm32_usbphyc_phy_init
        interconnect: imx: fix max_node_id
        um: random: Don't initialise hwrng struct with zero
        RDMA/irdma: Fix a window for use-after-free
        RDMA/irdma: Fix VLAN connection with wildcard address
        RDMA/irdma: Fix setting of QP context err_rq_idx_valid field
        RDMA/rtrs-srv: Fix modinfo output for stringify
        RDMA/rtrs: Fix warning when use poll mode on client side.
        RDMA/rtrs: Replace duplicate check with is_pollqueue helper
        RDMA/rtrs: Introduce destroy_cq helper
        RDMA/rtrs: Do not allow sessname to contain special symbols / and .
        RDMA/rtrs: Rename rtrs_sess to rtrs_path
        RDMA/rtrs-srv: Rename rtrs_srv_sess to rtrs_srv_path
        RDMA/rtrs-clt: Rename rtrs_clt_sess to rtrs_clt_path
        RDMA/rtrs-clt: Replace list_next_or_null_rr_rcu with an inline function
        RDMA/qedr: Fix potential memory leak in __qedr_alloc_mr()
        RDMA/hns: Fix incorrect clearing of interrupt status register
        RDMA/siw: Fix duplicated reported IW_CM_EVENT_CONNECT_REPLY event
        iio: cros: Register FIFO callback after sensor is registered
        clk: qcom: gcc-msm8939: Fix weird field spacing in ftbl_gcc_camss_cci_clk
        RDMA/hfi1: fix potential memory leak in setup_base_ctxt()
        gpio: gpiolib-of: Fix refcount bugs in of_mm_gpiochip_add_data()
        HID: mcp2221: prevent a buffer overflow in mcp_smbus_write()
        HID: amd_sfh: Add NULL check for hid device
        dmaengine: imx-dma: Cast of_device_get_match_data() with (uintptr_t)
        scripts/gdb: lx-dmesg: read records individually
        scripts/gdb: fix 'lx-dmesg' on 32 bits arch
        RDMA/rxe: Fix mw bind to allow any consumer key portion
        mmc: cavium-octeon: Add of_node_put() when breaking out of loop
        mmc: cavium-thunderx: Add of_node_put() when breaking out of loop
        HID: alps: Declare U1_UNICORN_LEGACY support
        RDMA/rxe: For invalidate compare according to set keys in mr
        PCI: tegra194: Fix Root Port interrupt handling
        PCI: tegra194: Fix link up retry sequence
        HID: amd_sfh: Handle condition of "no sensors"
        USB: serial: fix tty-port initialized comments
        usb: cdns3: change place of 'priv_ep' assignment in cdns3_gadget_ep_dequeue(), cdns3_gadget_ep_enable()
        mtd: spi-nor: fix spi_nor_spimem_setup_op() call in spi_nor_erase_{sector,chip}()
        KVM: nVMX: Set UMIP bit CR4_FIXED1 MSR when emulating UMIP
        platform/olpc: Fix uninitialized data in debugfs write
        RDMA/srpt: Duplicate port name members
        RDMA/srpt: Introduce a reference count in struct srpt_device
        RDMA/srpt: Fix a use-after-free
        android: binder: stop saving a pointer to the VMA
        mm/mmap.c: fix missing call to vm_unacct_memory in mmap_region
        selftests: kvm: set rax before vmcall
        of/fdt: declared return type does not match actual return type
        RDMA/mlx5: Add missing check for return value in get namespace flow
        RDMA/rxe: Add memory barriers to kernel queues
        RDMA/rxe: Remove the is_user members of struct rxe_sq/rxe_rq/rxe_srq
        RDMA/rxe: Fix error unwind in rxe_create_qp()
        block/rnbd-srv: Set keep_id to true after mutex_trylock
        null_blk: fix ida error handling in null_add_dev()
        nvme: use command_id instead of req->tag in trace_nvme_complete_rq()
        nvme: define compat_ioctl again to unbreak 32-bit userspace.
        nvme: disable namespace access for unsupported metadata
        nvme: don't return an error from nvme_configure_metadata
        nvme: catch -ENODEV from nvme_revalidate_zones again
        block/bio: remove duplicate append pages code
        block: ensure iov_iter advances for added pages
        jbd2: fix outstanding credits assert in jbd2_journal_commit_transaction()
        ext4: recover csum seed of tmp_inode after migrating to extents
        jbd2: fix assertion 'jh->b_frozen_data == NULL' failure when journal aborted
        usb: cdns3: Don't use priv_dev uninitialized in cdns3_gadget_ep_enable()
        opp: Fix error check in dev_pm_opp_attach_genpd()
        ASoC: cros_ec_codec: Fix refcount leak in cros_ec_codec_platform_probe
        ASoC: samsung: Fix error handling in aries_audio_probe
        ASoC: imx-audmux: Silence a clang warning
        ASoC: mediatek: mt8173: Fix refcount leak in mt8173_rt5650_rt5676_dev_probe
        ASoC: mt6797-mt6351: Fix refcount leak in mt6797_mt6351_dev_probe
        ASoC: codecs: da7210: add check for i2c_add_driver
        ASoC: mediatek: mt8173-rt5650: Fix refcount leak in mt8173_rt5650_dev_probe
        serial: 8250: Export ICR access helpers for internal use
        serial: 8250: dma: Allow driver operations before starting DMA transfers
        serial: 8250_dw: Store LSR into lsr_saved_flags in dw8250_tx_wait_empty()
        ASoC: codecs: msm8916-wcd-digital: move gains from SX_TLV to S8_TLV
        ASoC: codecs: wcd9335: move gains from SX_TLV to S8_TLV
        rpmsg: char: Add mutex protection for rpmsg_eptdev_open()
        rpmsg: mtk_rpmsg: Fix circular locking dependency
        remoteproc: k3-r5: Fix refcount leak in k3_r5_cluster_of_init
        selftests/livepatch: better synchronize test_klp_callbacks_busy
        profiling: fix shift too large makes kernel panic
        remoteproc: imx_rproc: Fix refcount leak in imx_rproc_addr_init
        ASoC: samsung: h1940_uda1380: include proepr GPIO consumer header
        powerpc/perf: Optimize clearing the pending PMI and remove WARN_ON for PMI check in power_pmu_disable
        ASoC: samsung: change gpiod_speaker_power and rx1950_audio from global to static variables
        tty: n_gsm: Delete gsmtty open SABM frame when config requester
        tty: n_gsm: fix user open not possible at responder until initiator open
        tty: n_gsm: fix tty registration before control channel open
        tty: n_gsm: fix wrong queuing behavior in gsm_dlci_data_output()
        tty: n_gsm: fix missing timer to handle stalled links
        tty: n_gsm: fix non flow control frames during mux flow off
        tty: n_gsm: fix packet re-transmission without open control channel
        tty: n_gsm: fix race condition in gsmld_write()
        tty: n_gsm: fix resource allocation order in gsm_activate_mux()
        ASoC: qcom: Fix missing of_node_put() in asoc_qcom_lpass_cpu_platform_probe()
        ASoC: imx-card: Fix DSD/PDM mclk frequency
        remoteproc: qcom: wcnss: Fix handling of IRQs
        vfio/ccw: Do not change FSM state in subchannel event
        serial: 8250_fsl: Don't report FE, PE and OE twice
        tty: n_gsm: fix wrong T1 retry count handling
        tty: n_gsm: fix DM command
        tty: n_gsm: fix missing corner cases in gsmld_poll()
        MIPS: vdso: Utilize __pa() for gic_pfn
        swiotlb: fail map correctly with failed io_tlb_default_mem
        ASoC: mt6359: Fix refcount leak bug
        serial: 8250_bcm7271: Save/restore RTS in suspend/resume
        iommu/exynos: Handle failed IOMMU device registration properly
        9p: fix a bunch of checkpatch warnings
        9p: Drop kref usage
        9p: Add client parameter to p9_req_put()
        net: 9p: fix refcount leak in p9_read_work() error handling
        MIPS: Fixed __debug_virt_addr_valid()
        rpmsg: qcom_smd: Fix refcount leak in qcom_smd_parse_edge
        kfifo: fix kfifo_to_user() return type
        lib/smp_processor_id: fix imbalanced instrumentation_end() call
        proc: fix a dentry lock race between release_task and lookup
        remoteproc: qcom: pas: Check if coredump is enabled
        remoteproc: sysmon: Wait for SSCTL service to come up
        mfd: t7l66xb: Drop platform disable callback
        mfd: max77620: Fix refcount leak in max77620_initialise_fps
        iommu/arm-smmu: qcom_iommu: Add of_node_put() when breaking out of loop
        perf tools: Fix dso_id inode generation comparison
        s390/dump: fix old lowcore virtual vs physical address confusion
        s390/maccess: fix semantics of memcpy_real() and its callers
        s390/crash: fix incorrect number of bytes to copy to user space
        s390/zcore: fix race when reading from hardware system area
        ASoC: fsl_asrc: force cast the asrc_format type
        ASoC: fsl-asoc-card: force cast the asrc_format type
        ASoC: fsl_easrc: use snd_pcm_format_t type for sample_format
        ASoC: imx-card: use snd_pcm_format_t type for asrc_format
        ASoC: qcom: q6dsp: Fix an off-by-one in q6adm_alloc_copp()
        fuse: Remove the control interface for virtio-fs
        ASoC: audio-graph-card: Add of_node_put() in fail path
        watchdog: sp5100_tco: Fix a memory leak of EFCH MMIO resource
        watchdog: armada_37xx_wdt: check the return value of devm_ioremap() in armada_37xx_wdt_probe()
        video: fbdev: amba-clcd: Fix refcount leak bugs
        video: fbdev: sis: fix typos in SiS_GetModeID()
        ASoC: mchp-spdifrx: disable end of block interrupt on failures
        powerpc/32: Call mmu_mark_initmem_nx() regardless of data block mapping.
        powerpc/32: Do not allow selection of e5500 or e6500 CPUs on PPC32
        powerpc/iommu: Fix iommu_table_in_use for a small default DMA window case
        powerpc/pci: Prefer PCI domain assignment via DT 'linux,pci-domain' and alias
        tty: serial: fsl_lpuart: correct the count of break characters
        s390/dump: fix os_info virtual vs physical address confusion
        s390/smp: cleanup target CPU callback starting
        s390/smp: cleanup control register update routines
        s390/maccess: rework absolute lowcore accessors
        s390/smp: enforce lowcore protection on CPU restart
        f2fs: fix to remove F2FS_COMPR_FL and tag F2FS_NOCOMP_FL at the same time
        powerpc/spufs: Fix refcount leak in spufs_init_isolated_loader
        powerpc/xive: Fix refcount leak in xive_get_max_prio
        powerpc/cell/axon_msi: Fix refcount leak in setup_msi_msg_address
        perf symbol: Fail to read phdr workaround
        kprobes: Forbid probing on trampoline and BPF code areas
        x86/bus_lock: Don't assume the init value of DEBUGCTLMSR.BUS_LOCK_DETECT to be zero
        powerpc/pci: Fix PHB numbering when using opal-phbid
        genelf: Use HAVE_LIBCRYPTO_SUPPORT, not the never defined HAVE_LIBCRYPTO
        scripts/faddr2line: Fix vmlinux detection on arm64
        sched/deadline: Merge dl_task_can_attach() and dl_cpu_busy()
        sched, cpuset: Fix dl_cpu_busy() panic due to empty cs->cpus_allowed
        x86/numa: Use cpumask_available instead of hardcoded NULL check
        video: fbdev: arkfb: Fix a divide-by-zero bug in ark_set_pixclock()
        tools/thermal: Fix possible path truncations
        sched: Fix the check of nr_running at queue wakelist
        sched: Remove the limitation of WF_ON_CPU on wakelist if wakee cpu is idle
        sched/core: Do not requeue task on CPU excluded from cpus_mask
        x86/entry: Build thunk_$(BITS) only if CONFIG_PREEMPTION=y
        f2fs: allow compression for mmap files in compress_mode=user
        f2fs: do not allow to decompress files have FI_COMPRESS_RELEASED
        video: fbdev: vt8623fb: Check the size of screen before memset_io()
        video: fbdev: arkfb: Check the size of screen before memset_io()
        video: fbdev: s3fb: Check the size of screen before memset_io()
        scsi: ufs: core: Correct ufshcd_shutdown() flow
        scsi: zfcp: Fix missing auto port scan and thus missing target ports
        scsi: qla2xxx: Fix imbalance vha->vref_count
        scsi: qla2xxx: Fix discovery issues in FC-AL topology
        scsi: qla2xxx: Turn off multi-queue for 8G adapters
        scsi: qla2xxx: Fix crash due to stale SRB access around I/O timeouts
        scsi: qla2xxx: Fix excessive I/O error messages by default
        scsi: qla2xxx: Fix erroneous mailbox timeout after PCI error injection
        scsi: qla2xxx: Wind down adapter after PCIe error
        scsi: qla2xxx: Fix losing FCP-2 targets on long port disable with I/Os
        scsi: qla2xxx: Fix losing target when it reappears during delete
        scsi: qla2xxx: Fix losing FCP-2 targets during port perturbation tests
        x86/bugs: Enable STIBP for IBPB mitigated RETBleed
        ftrace/x86: Add back ftrace_expected assignment
        x86/kprobes: Update kcb status flag after singlestepping
        x86/olpc: fix 'logical not is only applied to the left hand side'
        SMB3: fix lease break timeout when multiple deferred close handles for the same file.
        posix-cpu-timers: Cleanup CPU timers before freeing them during exec
        Input: gscps2 - check return value of ioremap() in gscps2_probe()
        __follow_mount_rcu(): verify that mount_lock remains unchanged
        spmi: trace: fix stack-out-of-bound access in SPMI tracing functions
        drm/mediatek: Allow commands to be sent during video mode
        drm/mediatek: Keep dsi as LP00 before dcs cmds transfer
        crypto: blake2s - remove shash module
        drm/dp/mst: Read the extended DPCD capabilities during system resume
        drm/vc4: drv: Adopt the dma configuration from the HVS or V3D component
        usbnet: smsc95xx: Don't clear read-only PHY interrupt
        usbnet: smsc95xx: Avoid link settings race on interrupt reception
        usbnet: smsc95xx: Forward PHY interrupts to PHY driver to avoid polling
        usbnet: smsc95xx: Fix deadlock on runtime resume
        firmware: arm_scpi: Ensure scpi_info is not assigned if the probe fails
        scsi: lpfc: Fix EEH support for NVMe I/O
        scsi: lpfc: SLI path split: Refactor lpfc_iocbq
        scsi: lpfc: SLI path split: Refactor fast and slow paths to native SLI4
        scsi: lpfc: SLI path split: Refactor SCSI paths
        scsi: lpfc: Remove extra atomic_inc on cmd_pending in queuecommand after VMID
        intel_th: pci: Add Meteor Lake-P support
        intel_th: pci: Add Raptor Lake-S PCH support
        intel_th: pci: Add Raptor Lake-S CPU support
        KVM: set_msr_mce: Permit guests to ignore single-bit ECC errors
        KVM: x86: Signal #GP, not -EPERM, on bad WRMSR(MCi_CTL/STATUS)
        iommu/vt-d: avoid invalid memory access via node_online(NUMA_NO_NODE)
        PCI/AER: Iterate over error counters instead of error strings
        PCI: qcom: Power on PHY before IPQ8074 DBI register accesses
        serial: 8250_pci: Refactor the loop in pci_ite887x_init()
        serial: 8250_pci: Replace dev_*() by pci_*() macros
        serial: 8250: Fold EndRun device support into OxSemi Tornado code
        serial: 8250: Add proper clock handling for OxSemi PCIe devices
        tty: 8250: Add support for Brainboxes PX cards.
        dm writecache: set a default MAX_WRITEBACK_JOBS
        kexec, KEYS, s390: Make use of built-in and secondary keyring for signature verification
        dm thin: fix use-after-free crash in dm_sm_register_threshold_callback
        net/9p: Initialize the iounit field during fid creation
        ARM: remove some dead code
        timekeeping: contribute wall clock to rng on time change
        locking/csd_lock: Change csdlock_debug from early_param to __setup
        block: remove the struct blk_queue_ctx forward declaration
        block: don't allow the same type rq_qos add more than once
        btrfs: ensure pages are unlocked on cow_file_range() failure
        btrfs: reset block group chunk force if we have to wait
        btrfs: properly flag filesystem with BTRFS_FEATURE_INCOMPAT_BIG_METADATA
        ACPI: CPPC: Do not prevent CPPC from working in the future
        powerpc/powernv/kvm: Use darn for H_RANDOM on Power9
        KVM: x86/pmu: Introduce the ctrl_mask value for fixed counter
        KVM: VMX: Mark all PERF_GLOBAL_(OVF)_CTRL bits reserved if there's no vPMU
        KVM: x86/pmu: Ignore pmu->global_ctrl check if vPMU doesn't support global_ctrl
        KVM: VMX: Add helper to check if the guest PMU has PERF_GLOBAL_CTRL
        KVM: nVMX: Attempt to load PERF_GLOBAL_CTRL on nVMX xfer iff it exists
        dm raid: fix address sanitizer warning in raid_status
        dm raid: fix address sanitizer warning in raid_resume
        tracing: Add '__rel_loc' using trace event macros
        tracing: Avoid -Warray-bounds warning for __rel_loc macro
        ext4: update s_overhead_clusters in the superblock during an on-line resize
        ext4: fix extent status tree race in writeback error recovery path
        ext4: add EXT4_INODE_HAS_XATTR_SPACE macro in xattr.h
        ext4: fix use-after-free in ext4_xattr_set_entry
        ext4: correct max_inline_xattr_value_size computing
        ext4: correct the misjudgment in ext4_iget_extra_inode
        ext4: fix warning in ext4_iomap_begin as race between bmap and write
        ext4: check if directory block is within i_size
        ext4: make sure ext4_append() always allocates new block
        ext4: remove EA inode entry from mbcache on inode eviction
        ext4: use kmemdup() to replace kmalloc + memcpy
        ext4: unindent codeblock in ext4_xattr_block_set()
        ext4: fix race when reusing xattr blocks
        KEYS: asymmetric: enforce SM2 signature use pkey algo
        tpm: eventlog: Fix section mismatch for DEBUG_SECTION_MISMATCH
        xen-blkback: fix persistent grants negotiation
        xen-blkback: Apply 'feature_persistent' parameter when connect
        xen-blkfront: Apply 'feature_persistent' parameter when connect
        powerpc: Fix eh field when calling lwarx on PPC32
        tracing: Use a struct alignof to determine trace event field alignment
        net_sched: cls_route: remove from list when handle is 0
        mac80211: fix a memory leak where sta_info is not freed
        tcp: fix over estimation in sk_forced_mem_schedule()
        crypto: lib/blake2s - reduce stack frame usage in self test
        Revert "mwifiex: fix sleep in atomic context bugs caused by dev_coredumpv"
        Revert "s390/smp: enforce lowcore protection on CPU restart"
        drm/bridge: tc358767: Fix (e)DP bridge endpoint parsing in dedicated function
        net: phy: smsc: Disable Energy Detect Power-Down in interrupt mode
        drm/vc4: change vc4_dma_range_matches from a global to static
        tracing/perf: Avoid -Warray-bounds warning for __rel_loc macro
        drm/msm: Fix dirtyfb refcounting
        drm/meson: Fix refcount leak in meson_encoder_hdmi_init
        io_uring: mem-account pbuf buckets
        Revert "net: usb: ax88179_178a needs FLAG_SEND_ZLP"
        Bluetooth: L2CAP: Fix l2cap_global_chan_by_psm regression
        drm/bridge: Move devm_drm_of_get_bridge to bridge/panel.c
        scsi: lpfc: Fix locking for lpfc_sli_iocbq_lookup()
        scsi: lpfc: Fix element offset in __lpfc_sli_release_iocbq_s4()
        scsi: lpfc: Resolve some cleanup issues following SLI path refactoring
        Linux 5.15.61

Signed-off-by: Greg Kroah-Hartman <gregkh@google.com>
Change-Id: Iec359ed301bcbcd6e19b67ee8534418fab26850b
2022-09-21 17:30:12 +02:00

3181 lines
90 KiB
C

// SPDX-License-Identifier: GPL-2.0+
/*
* (C) Copyright Linus Torvalds 1999
* (C) Copyright Johannes Erdfelt 1999-2001
* (C) Copyright Andreas Gal 1999
* (C) Copyright Gregory P. Smith 1999
* (C) Copyright Deti Fliegl 1999
* (C) Copyright Randy Dunlap 2000
* (C) Copyright David Brownell 2000-2002
*/
#include <linux/bcd.h>
#include <linux/module.h>
#include <linux/version.h>
#include <linux/kernel.h>
#include <linux/sched/task_stack.h>
#include <linux/slab.h>
#include <linux/completion.h>
#include <linux/utsname.h>
#include <linux/mm.h>
#include <asm/io.h>
#include <linux/device.h>
#include <linux/dma-mapping.h>
#include <linux/mutex.h>
#include <asm/irq.h>
#include <asm/byteorder.h>
#include <asm/unaligned.h>
#include <linux/platform_device.h>
#include <linux/workqueue.h>
#include <linux/pm_runtime.h>
#include <linux/types.h>
#include <linux/genalloc.h>
#include <linux/io.h>
#include <linux/kcov.h>
#include <linux/phy/phy.h>
#include <linux/usb.h>
#include <linux/usb/hcd.h>
#include <linux/usb/otg.h>
#include "usb.h"
#include "phy.h"
/*-------------------------------------------------------------------------*/
/*
* USB Host Controller Driver framework
*
* Plugs into usbcore (usb_bus) and lets HCDs share code, minimizing
* HCD-specific behaviors/bugs.
*
* This does error checks, tracks devices and urbs, and delegates to a
* "hc_driver" only for code (and data) that really needs to know about
* hardware differences. That includes root hub registers, i/o queues,
* and so on ... but as little else as possible.
*
* Shared code includes most of the "root hub" code (these are emulated,
* though each HC's hardware works differently) and PCI glue, plus request
* tracking overhead. The HCD code should only block on spinlocks or on
* hardware handshaking; blocking on software events (such as other kernel
* threads releasing resources, or completing actions) is all generic.
*
* Happens the USB 2.0 spec says this would be invisible inside the "USBD",
* and includes mostly a "HCDI" (HCD Interface) along with some APIs used
* only by the hub driver ... and that neither should be seen or used by
* usb client device drivers.
*
* Contributors of ideas or unattributed patches include: David Brownell,
* Roman Weissgaerber, Rory Bolt, Greg Kroah-Hartman, ...
*
* HISTORY:
* 2002-02-21 Pull in most of the usb_bus support from usb.c; some
* associated cleanup. "usb_hcd" still != "usb_bus".
* 2001-12-12 Initial patch version for Linux 2.5.1 kernel.
*/
/*-------------------------------------------------------------------------*/
/* Keep track of which host controller drivers are loaded */
unsigned long usb_hcds_loaded;
EXPORT_SYMBOL_GPL(usb_hcds_loaded);
/* host controllers we manage */
DEFINE_IDR (usb_bus_idr);
EXPORT_SYMBOL_GPL (usb_bus_idr);
/* used when allocating bus numbers */
#define USB_MAXBUS 64
/* used when updating list of hcds */
DEFINE_MUTEX(usb_bus_idr_lock); /* exported only for usbfs */
EXPORT_SYMBOL_GPL (usb_bus_idr_lock);
/* used for controlling access to virtual root hubs */
static DEFINE_SPINLOCK(hcd_root_hub_lock);
/* used when updating an endpoint's URB list */
static DEFINE_SPINLOCK(hcd_urb_list_lock);
/* used to protect against unlinking URBs after the device is gone */
static DEFINE_SPINLOCK(hcd_urb_unlink_lock);
/* wait queue for synchronous unlinks */
DECLARE_WAIT_QUEUE_HEAD(usb_kill_urb_queue);
/*-------------------------------------------------------------------------*/
/*
* Sharable chunks of root hub code.
*/
/*-------------------------------------------------------------------------*/
#define KERNEL_REL bin2bcd(LINUX_VERSION_MAJOR)
#define KERNEL_VER bin2bcd(LINUX_VERSION_PATCHLEVEL)
/* usb 3.1 root hub device descriptor */
static const u8 usb31_rh_dev_descriptor[18] = {
0x12, /* __u8 bLength; */
USB_DT_DEVICE, /* __u8 bDescriptorType; Device */
0x10, 0x03, /* __le16 bcdUSB; v3.1 */
0x09, /* __u8 bDeviceClass; HUB_CLASSCODE */
0x00, /* __u8 bDeviceSubClass; */
0x03, /* __u8 bDeviceProtocol; USB 3 hub */
0x09, /* __u8 bMaxPacketSize0; 2^9 = 512 Bytes */
0x6b, 0x1d, /* __le16 idVendor; Linux Foundation 0x1d6b */
0x03, 0x00, /* __le16 idProduct; device 0x0003 */
KERNEL_VER, KERNEL_REL, /* __le16 bcdDevice */
0x03, /* __u8 iManufacturer; */
0x02, /* __u8 iProduct; */
0x01, /* __u8 iSerialNumber; */
0x01 /* __u8 bNumConfigurations; */
};
/* usb 3.0 root hub device descriptor */
static const u8 usb3_rh_dev_descriptor[18] = {
0x12, /* __u8 bLength; */
USB_DT_DEVICE, /* __u8 bDescriptorType; Device */
0x00, 0x03, /* __le16 bcdUSB; v3.0 */
0x09, /* __u8 bDeviceClass; HUB_CLASSCODE */
0x00, /* __u8 bDeviceSubClass; */
0x03, /* __u8 bDeviceProtocol; USB 3.0 hub */
0x09, /* __u8 bMaxPacketSize0; 2^9 = 512 Bytes */
0x6b, 0x1d, /* __le16 idVendor; Linux Foundation 0x1d6b */
0x03, 0x00, /* __le16 idProduct; device 0x0003 */
KERNEL_VER, KERNEL_REL, /* __le16 bcdDevice */
0x03, /* __u8 iManufacturer; */
0x02, /* __u8 iProduct; */
0x01, /* __u8 iSerialNumber; */
0x01 /* __u8 bNumConfigurations; */
};
/* usb 2.5 (wireless USB 1.0) root hub device descriptor */
static const u8 usb25_rh_dev_descriptor[18] = {
0x12, /* __u8 bLength; */
USB_DT_DEVICE, /* __u8 bDescriptorType; Device */
0x50, 0x02, /* __le16 bcdUSB; v2.5 */
0x09, /* __u8 bDeviceClass; HUB_CLASSCODE */
0x00, /* __u8 bDeviceSubClass; */
0x00, /* __u8 bDeviceProtocol; [ usb 2.0 no TT ] */
0xFF, /* __u8 bMaxPacketSize0; always 0xFF (WUSB Spec 7.4.1). */
0x6b, 0x1d, /* __le16 idVendor; Linux Foundation 0x1d6b */
0x02, 0x00, /* __le16 idProduct; device 0x0002 */
KERNEL_VER, KERNEL_REL, /* __le16 bcdDevice */
0x03, /* __u8 iManufacturer; */
0x02, /* __u8 iProduct; */
0x01, /* __u8 iSerialNumber; */
0x01 /* __u8 bNumConfigurations; */
};
/* usb 2.0 root hub device descriptor */
static const u8 usb2_rh_dev_descriptor[18] = {
0x12, /* __u8 bLength; */
USB_DT_DEVICE, /* __u8 bDescriptorType; Device */
0x00, 0x02, /* __le16 bcdUSB; v2.0 */
0x09, /* __u8 bDeviceClass; HUB_CLASSCODE */
0x00, /* __u8 bDeviceSubClass; */
0x00, /* __u8 bDeviceProtocol; [ usb 2.0 no TT ] */
0x40, /* __u8 bMaxPacketSize0; 64 Bytes */
0x6b, 0x1d, /* __le16 idVendor; Linux Foundation 0x1d6b */
0x02, 0x00, /* __le16 idProduct; device 0x0002 */
KERNEL_VER, KERNEL_REL, /* __le16 bcdDevice */
0x03, /* __u8 iManufacturer; */
0x02, /* __u8 iProduct; */
0x01, /* __u8 iSerialNumber; */
0x01 /* __u8 bNumConfigurations; */
};
/* no usb 2.0 root hub "device qualifier" descriptor: one speed only */
/* usb 1.1 root hub device descriptor */
static const u8 usb11_rh_dev_descriptor[18] = {
0x12, /* __u8 bLength; */
USB_DT_DEVICE, /* __u8 bDescriptorType; Device */
0x10, 0x01, /* __le16 bcdUSB; v1.1 */
0x09, /* __u8 bDeviceClass; HUB_CLASSCODE */
0x00, /* __u8 bDeviceSubClass; */
0x00, /* __u8 bDeviceProtocol; [ low/full speeds only ] */
0x40, /* __u8 bMaxPacketSize0; 64 Bytes */
0x6b, 0x1d, /* __le16 idVendor; Linux Foundation 0x1d6b */
0x01, 0x00, /* __le16 idProduct; device 0x0001 */
KERNEL_VER, KERNEL_REL, /* __le16 bcdDevice */
0x03, /* __u8 iManufacturer; */
0x02, /* __u8 iProduct; */
0x01, /* __u8 iSerialNumber; */
0x01 /* __u8 bNumConfigurations; */
};
/*-------------------------------------------------------------------------*/
/* Configuration descriptors for our root hubs */
static const u8 fs_rh_config_descriptor[] = {
/* one configuration */
0x09, /* __u8 bLength; */
USB_DT_CONFIG, /* __u8 bDescriptorType; Configuration */
0x19, 0x00, /* __le16 wTotalLength; */
0x01, /* __u8 bNumInterfaces; (1) */
0x01, /* __u8 bConfigurationValue; */
0x00, /* __u8 iConfiguration; */
0xc0, /* __u8 bmAttributes;
Bit 7: must be set,
6: Self-powered,
5: Remote wakeup,
4..0: resvd */
0x00, /* __u8 MaxPower; */
/* USB 1.1:
* USB 2.0, single TT organization (mandatory):
* one interface, protocol 0
*
* USB 2.0, multiple TT organization (optional):
* two interfaces, protocols 1 (like single TT)
* and 2 (multiple TT mode) ... config is
* sometimes settable
* NOT IMPLEMENTED
*/
/* one interface */
0x09, /* __u8 if_bLength; */
USB_DT_INTERFACE, /* __u8 if_bDescriptorType; Interface */
0x00, /* __u8 if_bInterfaceNumber; */
0x00, /* __u8 if_bAlternateSetting; */
0x01, /* __u8 if_bNumEndpoints; */
0x09, /* __u8 if_bInterfaceClass; HUB_CLASSCODE */
0x00, /* __u8 if_bInterfaceSubClass; */
0x00, /* __u8 if_bInterfaceProtocol; [usb1.1 or single tt] */
0x00, /* __u8 if_iInterface; */
/* one endpoint (status change endpoint) */
0x07, /* __u8 ep_bLength; */
USB_DT_ENDPOINT, /* __u8 ep_bDescriptorType; Endpoint */
0x81, /* __u8 ep_bEndpointAddress; IN Endpoint 1 */
0x03, /* __u8 ep_bmAttributes; Interrupt */
0x02, 0x00, /* __le16 ep_wMaxPacketSize; 1 + (MAX_ROOT_PORTS / 8) */
0xff /* __u8 ep_bInterval; (255ms -- usb 2.0 spec) */
};
static const u8 hs_rh_config_descriptor[] = {
/* one configuration */
0x09, /* __u8 bLength; */
USB_DT_CONFIG, /* __u8 bDescriptorType; Configuration */
0x19, 0x00, /* __le16 wTotalLength; */
0x01, /* __u8 bNumInterfaces; (1) */
0x01, /* __u8 bConfigurationValue; */
0x00, /* __u8 iConfiguration; */
0xc0, /* __u8 bmAttributes;
Bit 7: must be set,
6: Self-powered,
5: Remote wakeup,
4..0: resvd */
0x00, /* __u8 MaxPower; */
/* USB 1.1:
* USB 2.0, single TT organization (mandatory):
* one interface, protocol 0
*
* USB 2.0, multiple TT organization (optional):
* two interfaces, protocols 1 (like single TT)
* and 2 (multiple TT mode) ... config is
* sometimes settable
* NOT IMPLEMENTED
*/
/* one interface */
0x09, /* __u8 if_bLength; */
USB_DT_INTERFACE, /* __u8 if_bDescriptorType; Interface */
0x00, /* __u8 if_bInterfaceNumber; */
0x00, /* __u8 if_bAlternateSetting; */
0x01, /* __u8 if_bNumEndpoints; */
0x09, /* __u8 if_bInterfaceClass; HUB_CLASSCODE */
0x00, /* __u8 if_bInterfaceSubClass; */
0x00, /* __u8 if_bInterfaceProtocol; [usb1.1 or single tt] */
0x00, /* __u8 if_iInterface; */
/* one endpoint (status change endpoint) */
0x07, /* __u8 ep_bLength; */
USB_DT_ENDPOINT, /* __u8 ep_bDescriptorType; Endpoint */
0x81, /* __u8 ep_bEndpointAddress; IN Endpoint 1 */
0x03, /* __u8 ep_bmAttributes; Interrupt */
/* __le16 ep_wMaxPacketSize; 1 + (MAX_ROOT_PORTS / 8)
* see hub.c:hub_configure() for details. */
(USB_MAXCHILDREN + 1 + 7) / 8, 0x00,
0x0c /* __u8 ep_bInterval; (256ms -- usb 2.0 spec) */
};
static const u8 ss_rh_config_descriptor[] = {
/* one configuration */
0x09, /* __u8 bLength; */
USB_DT_CONFIG, /* __u8 bDescriptorType; Configuration */
0x1f, 0x00, /* __le16 wTotalLength; */
0x01, /* __u8 bNumInterfaces; (1) */
0x01, /* __u8 bConfigurationValue; */
0x00, /* __u8 iConfiguration; */
0xc0, /* __u8 bmAttributes;
Bit 7: must be set,
6: Self-powered,
5: Remote wakeup,
4..0: resvd */
0x00, /* __u8 MaxPower; */
/* one interface */
0x09, /* __u8 if_bLength; */
USB_DT_INTERFACE, /* __u8 if_bDescriptorType; Interface */
0x00, /* __u8 if_bInterfaceNumber; */
0x00, /* __u8 if_bAlternateSetting; */
0x01, /* __u8 if_bNumEndpoints; */
0x09, /* __u8 if_bInterfaceClass; HUB_CLASSCODE */
0x00, /* __u8 if_bInterfaceSubClass; */
0x00, /* __u8 if_bInterfaceProtocol; */
0x00, /* __u8 if_iInterface; */
/* one endpoint (status change endpoint) */
0x07, /* __u8 ep_bLength; */
USB_DT_ENDPOINT, /* __u8 ep_bDescriptorType; Endpoint */
0x81, /* __u8 ep_bEndpointAddress; IN Endpoint 1 */
0x03, /* __u8 ep_bmAttributes; Interrupt */
/* __le16 ep_wMaxPacketSize; 1 + (MAX_ROOT_PORTS / 8)
* see hub.c:hub_configure() for details. */
(USB_MAXCHILDREN + 1 + 7) / 8, 0x00,
0x0c, /* __u8 ep_bInterval; (256ms -- usb 2.0 spec) */
/* one SuperSpeed endpoint companion descriptor */
0x06, /* __u8 ss_bLength */
USB_DT_SS_ENDPOINT_COMP, /* __u8 ss_bDescriptorType; SuperSpeed EP */
/* Companion */
0x00, /* __u8 ss_bMaxBurst; allows 1 TX between ACKs */
0x00, /* __u8 ss_bmAttributes; 1 packet per service interval */
0x02, 0x00 /* __le16 ss_wBytesPerInterval; 15 bits for max 15 ports */
};
/* authorized_default behaviour:
* -1 is authorized for all devices except wireless (old behaviour)
* 0 is unauthorized for all devices
* 1 is authorized for all devices
* 2 is authorized for internal devices
*/
#define USB_AUTHORIZE_WIRED -1
#define USB_AUTHORIZE_NONE 0
#define USB_AUTHORIZE_ALL 1
#define USB_AUTHORIZE_INTERNAL 2
static int authorized_default = USB_AUTHORIZE_WIRED;
module_param(authorized_default, int, S_IRUGO|S_IWUSR);
MODULE_PARM_DESC(authorized_default,
"Default USB device authorization: 0 is not authorized, 1 is "
"authorized, 2 is authorized for internal devices, -1 is "
"authorized except for wireless USB (default, old behaviour)");
/*-------------------------------------------------------------------------*/
/**
* ascii2desc() - Helper routine for producing UTF-16LE string descriptors
* @s: Null-terminated ASCII (actually ISO-8859-1) string
* @buf: Buffer for USB string descriptor (header + UTF-16LE)
* @len: Length (in bytes; may be odd) of descriptor buffer.
*
* Return: The number of bytes filled in: 2 + 2*strlen(s) or @len,
* whichever is less.
*
* Note:
* USB String descriptors can contain at most 126 characters; input
* strings longer than that are truncated.
*/
static unsigned
ascii2desc(char const *s, u8 *buf, unsigned len)
{
unsigned n, t = 2 + 2*strlen(s);
if (t > 254)
t = 254; /* Longest possible UTF string descriptor */
if (len > t)
len = t;
t += USB_DT_STRING << 8; /* Now t is first 16 bits to store */
n = len;
while (n--) {
*buf++ = t;
if (!n--)
break;
*buf++ = t >> 8;
t = (unsigned char)*s++;
}
return len;
}
/**
* rh_string() - provides string descriptors for root hub
* @id: the string ID number (0: langids, 1: serial #, 2: product, 3: vendor)
* @hcd: the host controller for this root hub
* @data: buffer for output packet
* @len: length of the provided buffer
*
* Produces either a manufacturer, product or serial number string for the
* virtual root hub device.
*
* Return: The number of bytes filled in: the length of the descriptor or
* of the provided buffer, whichever is less.
*/
static unsigned
rh_string(int id, struct usb_hcd const *hcd, u8 *data, unsigned len)
{
char buf[100];
char const *s;
static char const langids[4] = {4, USB_DT_STRING, 0x09, 0x04};
/* language ids */
switch (id) {
case 0:
/* Array of LANGID codes (0x0409 is MSFT-speak for "en-us") */
/* See http://www.usb.org/developers/docs/USB_LANGIDs.pdf */
if (len > 4)
len = 4;
memcpy(data, langids, len);
return len;
case 1:
/* Serial number */
s = hcd->self.bus_name;
break;
case 2:
/* Product name */
s = hcd->product_desc;
break;
case 3:
/* Manufacturer */
snprintf (buf, sizeof buf, "%s %s %s", init_utsname()->sysname,
init_utsname()->release, hcd->driver->description);
s = buf;
break;
default:
/* Can't happen; caller guarantees it */
return 0;
}
return ascii2desc(s, data, len);
}
/* Root hub control transfers execute synchronously */
static int rh_call_control (struct usb_hcd *hcd, struct urb *urb)
{
struct usb_ctrlrequest *cmd;
u16 typeReq, wValue, wIndex, wLength;
u8 *ubuf = urb->transfer_buffer;
unsigned len = 0;
int status;
u8 patch_wakeup = 0;
u8 patch_protocol = 0;
u16 tbuf_size;
u8 *tbuf = NULL;
const u8 *bufp;
might_sleep();
spin_lock_irq(&hcd_root_hub_lock);
status = usb_hcd_link_urb_to_ep(hcd, urb);
spin_unlock_irq(&hcd_root_hub_lock);
if (status)
return status;
urb->hcpriv = hcd; /* Indicate it's queued */
cmd = (struct usb_ctrlrequest *) urb->setup_packet;
typeReq = (cmd->bRequestType << 8) | cmd->bRequest;
wValue = le16_to_cpu (cmd->wValue);
wIndex = le16_to_cpu (cmd->wIndex);
wLength = le16_to_cpu (cmd->wLength);
if (wLength > urb->transfer_buffer_length)
goto error;
/*
* tbuf should be at least as big as the
* USB hub descriptor.
*/
tbuf_size = max_t(u16, sizeof(struct usb_hub_descriptor), wLength);
tbuf = kzalloc(tbuf_size, GFP_KERNEL);
if (!tbuf) {
status = -ENOMEM;
goto err_alloc;
}
bufp = tbuf;
urb->actual_length = 0;
switch (typeReq) {
/* DEVICE REQUESTS */
/* The root hub's remote wakeup enable bit is implemented using
* driver model wakeup flags. If this system supports wakeup
* through USB, userspace may change the default "allow wakeup"
* policy through sysfs or these calls.
*
* Most root hubs support wakeup from downstream devices, for
* runtime power management (disabling USB clocks and reducing
* VBUS power usage). However, not all of them do so; silicon,
* board, and BIOS bugs here are not uncommon, so these can't
* be treated quite like external hubs.
*
* Likewise, not all root hubs will pass wakeup events upstream,
* to wake up the whole system. So don't assume root hub and
* controller capabilities are identical.
*/
case DeviceRequest | USB_REQ_GET_STATUS:
tbuf[0] = (device_may_wakeup(&hcd->self.root_hub->dev)
<< USB_DEVICE_REMOTE_WAKEUP)
| (1 << USB_DEVICE_SELF_POWERED);
tbuf[1] = 0;
len = 2;
break;
case DeviceOutRequest | USB_REQ_CLEAR_FEATURE:
if (wValue == USB_DEVICE_REMOTE_WAKEUP)
device_set_wakeup_enable(&hcd->self.root_hub->dev, 0);
else
goto error;
break;
case DeviceOutRequest | USB_REQ_SET_FEATURE:
if (device_can_wakeup(&hcd->self.root_hub->dev)
&& wValue == USB_DEVICE_REMOTE_WAKEUP)
device_set_wakeup_enable(&hcd->self.root_hub->dev, 1);
else
goto error;
break;
case DeviceRequest | USB_REQ_GET_CONFIGURATION:
tbuf[0] = 1;
len = 1;
fallthrough;
case DeviceOutRequest | USB_REQ_SET_CONFIGURATION:
break;
case DeviceRequest | USB_REQ_GET_DESCRIPTOR:
switch (wValue & 0xff00) {
case USB_DT_DEVICE << 8:
switch (hcd->speed) {
case HCD_USB32:
case HCD_USB31:
bufp = usb31_rh_dev_descriptor;
break;
case HCD_USB3:
bufp = usb3_rh_dev_descriptor;
break;
case HCD_USB25:
bufp = usb25_rh_dev_descriptor;
break;
case HCD_USB2:
bufp = usb2_rh_dev_descriptor;
break;
case HCD_USB11:
bufp = usb11_rh_dev_descriptor;
break;
default:
goto error;
}
len = 18;
if (hcd->has_tt)
patch_protocol = 1;
break;
case USB_DT_CONFIG << 8:
switch (hcd->speed) {
case HCD_USB32:
case HCD_USB31:
case HCD_USB3:
bufp = ss_rh_config_descriptor;
len = sizeof ss_rh_config_descriptor;
break;
case HCD_USB25:
case HCD_USB2:
bufp = hs_rh_config_descriptor;
len = sizeof hs_rh_config_descriptor;
break;
case HCD_USB11:
bufp = fs_rh_config_descriptor;
len = sizeof fs_rh_config_descriptor;
break;
default:
goto error;
}
if (device_can_wakeup(&hcd->self.root_hub->dev))
patch_wakeup = 1;
break;
case USB_DT_STRING << 8:
if ((wValue & 0xff) < 4)
urb->actual_length = rh_string(wValue & 0xff,
hcd, ubuf, wLength);
else /* unsupported IDs --> "protocol stall" */
goto error;
break;
case USB_DT_BOS << 8:
goto nongeneric;
default:
goto error;
}
break;
case DeviceRequest | USB_REQ_GET_INTERFACE:
tbuf[0] = 0;
len = 1;
fallthrough;
case DeviceOutRequest | USB_REQ_SET_INTERFACE:
break;
case DeviceOutRequest | USB_REQ_SET_ADDRESS:
/* wValue == urb->dev->devaddr */
dev_dbg (hcd->self.controller, "root hub device address %d\n",
wValue);
break;
/* INTERFACE REQUESTS (no defined feature/status flags) */
/* ENDPOINT REQUESTS */
case EndpointRequest | USB_REQ_GET_STATUS:
/* ENDPOINT_HALT flag */
tbuf[0] = 0;
tbuf[1] = 0;
len = 2;
fallthrough;
case EndpointOutRequest | USB_REQ_CLEAR_FEATURE:
case EndpointOutRequest | USB_REQ_SET_FEATURE:
dev_dbg (hcd->self.controller, "no endpoint features yet\n");
break;
/* CLASS REQUESTS (and errors) */
default:
nongeneric:
/* non-generic request */
switch (typeReq) {
case GetHubStatus:
len = 4;
break;
case GetPortStatus:
if (wValue == HUB_PORT_STATUS)
len = 4;
else
/* other port status types return 8 bytes */
len = 8;
break;
case GetHubDescriptor:
len = sizeof (struct usb_hub_descriptor);
break;
case DeviceRequest | USB_REQ_GET_DESCRIPTOR:
/* len is returned by hub_control */
break;
}
status = hcd->driver->hub_control (hcd,
typeReq, wValue, wIndex,
tbuf, wLength);
if (typeReq == GetHubDescriptor)
usb_hub_adjust_deviceremovable(hcd->self.root_hub,
(struct usb_hub_descriptor *)tbuf);
break;
error:
/* "protocol stall" on error */
status = -EPIPE;
}
if (status < 0) {
len = 0;
if (status != -EPIPE) {
dev_dbg (hcd->self.controller,
"CTRL: TypeReq=0x%x val=0x%x "
"idx=0x%x len=%d ==> %d\n",
typeReq, wValue, wIndex,
wLength, status);
}
} else if (status > 0) {
/* hub_control may return the length of data copied. */
len = status;
status = 0;
}
if (len) {
if (urb->transfer_buffer_length < len)
len = urb->transfer_buffer_length;
urb->actual_length = len;
/* always USB_DIR_IN, toward host */
memcpy (ubuf, bufp, len);
/* report whether RH hardware supports remote wakeup */
if (patch_wakeup &&
len > offsetof (struct usb_config_descriptor,
bmAttributes))
((struct usb_config_descriptor *)ubuf)->bmAttributes
|= USB_CONFIG_ATT_WAKEUP;
/* report whether RH hardware has an integrated TT */
if (patch_protocol &&
len > offsetof(struct usb_device_descriptor,
bDeviceProtocol))
((struct usb_device_descriptor *) ubuf)->
bDeviceProtocol = USB_HUB_PR_HS_SINGLE_TT;
}
kfree(tbuf);
err_alloc:
/* any errors get returned through the urb completion */
spin_lock_irq(&hcd_root_hub_lock);
usb_hcd_unlink_urb_from_ep(hcd, urb);
usb_hcd_giveback_urb(hcd, urb, status);
spin_unlock_irq(&hcd_root_hub_lock);
return 0;
}
/*-------------------------------------------------------------------------*/
/*
* Root Hub interrupt transfers are polled using a timer if the
* driver requests it; otherwise the driver is responsible for
* calling usb_hcd_poll_rh_status() when an event occurs.
*
* Completion handler may not sleep. See usb_hcd_giveback_urb() for details.
*/
void usb_hcd_poll_rh_status(struct usb_hcd *hcd)
{
struct urb *urb;
int length;
int status;
unsigned long flags;
char buffer[6]; /* Any root hubs with > 31 ports? */
if (unlikely(!hcd->rh_pollable))
return;
if (!hcd->uses_new_polling && !hcd->status_urb)
return;
length = hcd->driver->hub_status_data(hcd, buffer);
if (length > 0) {
/* try to complete the status urb */
spin_lock_irqsave(&hcd_root_hub_lock, flags);
urb = hcd->status_urb;
if (urb) {
clear_bit(HCD_FLAG_POLL_PENDING, &hcd->flags);
hcd->status_urb = NULL;
if (urb->transfer_buffer_length >= length) {
status = 0;
} else {
status = -EOVERFLOW;
length = urb->transfer_buffer_length;
}
urb->actual_length = length;
memcpy(urb->transfer_buffer, buffer, length);
usb_hcd_unlink_urb_from_ep(hcd, urb);
usb_hcd_giveback_urb(hcd, urb, status);
} else {
length = 0;
set_bit(HCD_FLAG_POLL_PENDING, &hcd->flags);
}
spin_unlock_irqrestore(&hcd_root_hub_lock, flags);
}
/* The USB 2.0 spec says 256 ms. This is close enough and won't
* exceed that limit if HZ is 100. The math is more clunky than
* maybe expected, this is to make sure that all timers for USB devices
* fire at the same time to give the CPU a break in between */
if (hcd->uses_new_polling ? HCD_POLL_RH(hcd) :
(length == 0 && hcd->status_urb != NULL))
mod_timer (&hcd->rh_timer, (jiffies/(HZ/4) + 1) * (HZ/4));
}
EXPORT_SYMBOL_GPL(usb_hcd_poll_rh_status);
/* timer callback */
static void rh_timer_func (struct timer_list *t)
{
struct usb_hcd *_hcd = from_timer(_hcd, t, rh_timer);
usb_hcd_poll_rh_status(_hcd);
}
/*-------------------------------------------------------------------------*/
static int rh_queue_status (struct usb_hcd *hcd, struct urb *urb)
{
int retval;
unsigned long flags;
unsigned len = 1 + (urb->dev->maxchild / 8);
spin_lock_irqsave (&hcd_root_hub_lock, flags);
if (hcd->status_urb || urb->transfer_buffer_length < len) {
dev_dbg (hcd->self.controller, "not queuing rh status urb\n");
retval = -EINVAL;
goto done;
}
retval = usb_hcd_link_urb_to_ep(hcd, urb);
if (retval)
goto done;
hcd->status_urb = urb;
urb->hcpriv = hcd; /* indicate it's queued */
if (!hcd->uses_new_polling)
mod_timer(&hcd->rh_timer, (jiffies/(HZ/4) + 1) * (HZ/4));
/* If a status change has already occurred, report it ASAP */
else if (HCD_POLL_PENDING(hcd))
mod_timer(&hcd->rh_timer, jiffies);
retval = 0;
done:
spin_unlock_irqrestore (&hcd_root_hub_lock, flags);
return retval;
}
static int rh_urb_enqueue (struct usb_hcd *hcd, struct urb *urb)
{
if (usb_endpoint_xfer_int(&urb->ep->desc))
return rh_queue_status (hcd, urb);
if (usb_endpoint_xfer_control(&urb->ep->desc))
return rh_call_control (hcd, urb);
return -EINVAL;
}
/*-------------------------------------------------------------------------*/
/* Unlinks of root-hub control URBs are legal, but they don't do anything
* since these URBs always execute synchronously.
*/
static int usb_rh_urb_dequeue(struct usb_hcd *hcd, struct urb *urb, int status)
{
unsigned long flags;
int rc;
spin_lock_irqsave(&hcd_root_hub_lock, flags);
rc = usb_hcd_check_unlink_urb(hcd, urb, status);
if (rc)
goto done;
if (usb_endpoint_num(&urb->ep->desc) == 0) { /* Control URB */
; /* Do nothing */
} else { /* Status URB */
if (!hcd->uses_new_polling)
del_timer (&hcd->rh_timer);
if (urb == hcd->status_urb) {
hcd->status_urb = NULL;
usb_hcd_unlink_urb_from_ep(hcd, urb);
usb_hcd_giveback_urb(hcd, urb, status);
}
}
done:
spin_unlock_irqrestore(&hcd_root_hub_lock, flags);
return rc;
}
/*-------------------------------------------------------------------------*/
/**
* usb_bus_init - shared initialization code
* @bus: the bus structure being initialized
*
* This code is used to initialize a usb_bus structure, memory for which is
* separately managed.
*/
static void usb_bus_init (struct usb_bus *bus)
{
memset (&bus->devmap, 0, sizeof(struct usb_devmap));
bus->devnum_next = 1;
bus->root_hub = NULL;
bus->busnum = -1;
bus->bandwidth_allocated = 0;
bus->bandwidth_int_reqs = 0;
bus->bandwidth_isoc_reqs = 0;
mutex_init(&bus->devnum_next_mutex);
}
/*-------------------------------------------------------------------------*/
/**
* usb_register_bus - registers the USB host controller with the usb core
* @bus: pointer to the bus to register
*
* Context: task context, might sleep.
*
* Assigns a bus number, and links the controller into usbcore data
* structures so that it can be seen by scanning the bus list.
*
* Return: 0 if successful. A negative error code otherwise.
*/
static int usb_register_bus(struct usb_bus *bus)
{
int result = -E2BIG;
int busnum;
mutex_lock(&usb_bus_idr_lock);
busnum = idr_alloc(&usb_bus_idr, bus, 1, USB_MAXBUS, GFP_KERNEL);
if (busnum < 0) {
pr_err("%s: failed to get bus number\n", usbcore_name);
goto error_find_busnum;
}
bus->busnum = busnum;
mutex_unlock(&usb_bus_idr_lock);
usb_notify_add_bus(bus);
dev_info (bus->controller, "new USB bus registered, assigned bus "
"number %d\n", bus->busnum);
return 0;
error_find_busnum:
mutex_unlock(&usb_bus_idr_lock);
return result;
}
/**
* usb_deregister_bus - deregisters the USB host controller
* @bus: pointer to the bus to deregister
*
* Context: task context, might sleep.
*
* Recycles the bus number, and unlinks the controller from usbcore data
* structures so that it won't be seen by scanning the bus list.
*/
static void usb_deregister_bus (struct usb_bus *bus)
{
dev_info (bus->controller, "USB bus %d deregistered\n", bus->busnum);
/*
* NOTE: make sure that all the devices are removed by the
* controller code, as well as having it call this when cleaning
* itself up
*/
mutex_lock(&usb_bus_idr_lock);
idr_remove(&usb_bus_idr, bus->busnum);
mutex_unlock(&usb_bus_idr_lock);
usb_notify_remove_bus(bus);
}
/**
* register_root_hub - called by usb_add_hcd() to register a root hub
* @hcd: host controller for this root hub
*
* This function registers the root hub with the USB subsystem. It sets up
* the device properly in the device tree and then calls usb_new_device()
* to register the usb device. It also assigns the root hub's USB address
* (always 1).
*
* Return: 0 if successful. A negative error code otherwise.
*/
static int register_root_hub(struct usb_hcd *hcd)
{
struct device *parent_dev = hcd->self.controller;
struct usb_device *usb_dev = hcd->self.root_hub;
const int devnum = 1;
int retval;
usb_dev->devnum = devnum;
usb_dev->bus->devnum_next = devnum + 1;
set_bit (devnum, usb_dev->bus->devmap.devicemap);
usb_set_device_state(usb_dev, USB_STATE_ADDRESS);
mutex_lock(&usb_bus_idr_lock);
usb_dev->ep0.desc.wMaxPacketSize = cpu_to_le16(64);
retval = usb_get_device_descriptor(usb_dev, USB_DT_DEVICE_SIZE);
if (retval != sizeof usb_dev->descriptor) {
mutex_unlock(&usb_bus_idr_lock);
dev_dbg (parent_dev, "can't read %s device descriptor %d\n",
dev_name(&usb_dev->dev), retval);
return (retval < 0) ? retval : -EMSGSIZE;
}
if (le16_to_cpu(usb_dev->descriptor.bcdUSB) >= 0x0201) {
retval = usb_get_bos_descriptor(usb_dev);
if (!retval) {
usb_dev->lpm_capable = usb_device_supports_lpm(usb_dev);
} else if (usb_dev->speed >= USB_SPEED_SUPER) {
mutex_unlock(&usb_bus_idr_lock);
dev_dbg(parent_dev, "can't read %s bos descriptor %d\n",
dev_name(&usb_dev->dev), retval);
return retval;
}
}
retval = usb_new_device (usb_dev);
if (retval) {
dev_err (parent_dev, "can't register root hub for %s, %d\n",
dev_name(&usb_dev->dev), retval);
} else {
spin_lock_irq (&hcd_root_hub_lock);
hcd->rh_registered = 1;
spin_unlock_irq (&hcd_root_hub_lock);
/* Did the HC die before the root hub was registered? */
if (HCD_DEAD(hcd))
usb_hc_died (hcd); /* This time clean up */
}
mutex_unlock(&usb_bus_idr_lock);
return retval;
}
/*
* usb_hcd_start_port_resume - a root-hub port is sending a resume signal
* @bus: the bus which the root hub belongs to
* @portnum: the port which is being resumed
*
* HCDs should call this function when they know that a resume signal is
* being sent to a root-hub port. The root hub will be prevented from
* going into autosuspend until usb_hcd_end_port_resume() is called.
*
* The bus's private lock must be held by the caller.
*/
void usb_hcd_start_port_resume(struct usb_bus *bus, int portnum)
{
unsigned bit = 1 << portnum;
if (!(bus->resuming_ports & bit)) {
bus->resuming_ports |= bit;
pm_runtime_get_noresume(&bus->root_hub->dev);
}
}
EXPORT_SYMBOL_GPL(usb_hcd_start_port_resume);
/*
* usb_hcd_end_port_resume - a root-hub port has stopped sending a resume signal
* @bus: the bus which the root hub belongs to
* @portnum: the port which is being resumed
*
* HCDs should call this function when they know that a resume signal has
* stopped being sent to a root-hub port. The root hub will be allowed to
* autosuspend again.
*
* The bus's private lock must be held by the caller.
*/
void usb_hcd_end_port_resume(struct usb_bus *bus, int portnum)
{
unsigned bit = 1 << portnum;
if (bus->resuming_ports & bit) {
bus->resuming_ports &= ~bit;
pm_runtime_put_noidle(&bus->root_hub->dev);
}
}
EXPORT_SYMBOL_GPL(usb_hcd_end_port_resume);
/*-------------------------------------------------------------------------*/
/**
* usb_calc_bus_time - approximate periodic transaction time in nanoseconds
* @speed: from dev->speed; USB_SPEED_{LOW,FULL,HIGH}
* @is_input: true iff the transaction sends data to the host
* @isoc: true for isochronous transactions, false for interrupt ones
* @bytecount: how many bytes in the transaction.
*
* Return: Approximate bus time in nanoseconds for a periodic transaction.
*
* Note:
* See USB 2.0 spec section 5.11.3; only periodic transfers need to be
* scheduled in software, this function is only used for such scheduling.
*/
long usb_calc_bus_time (int speed, int is_input, int isoc, int bytecount)
{
unsigned long tmp;
switch (speed) {
case USB_SPEED_LOW: /* INTR only */
if (is_input) {
tmp = (67667L * (31L + 10L * BitTime (bytecount))) / 1000L;
return 64060L + (2 * BW_HUB_LS_SETUP) + BW_HOST_DELAY + tmp;
} else {
tmp = (66700L * (31L + 10L * BitTime (bytecount))) / 1000L;
return 64107L + (2 * BW_HUB_LS_SETUP) + BW_HOST_DELAY + tmp;
}
case USB_SPEED_FULL: /* ISOC or INTR */
if (isoc) {
tmp = (8354L * (31L + 10L * BitTime (bytecount))) / 1000L;
return ((is_input) ? 7268L : 6265L) + BW_HOST_DELAY + tmp;
} else {
tmp = (8354L * (31L + 10L * BitTime (bytecount))) / 1000L;
return 9107L + BW_HOST_DELAY + tmp;
}
case USB_SPEED_HIGH: /* ISOC or INTR */
/* FIXME adjust for input vs output */
if (isoc)
tmp = HS_NSECS_ISO (bytecount);
else
tmp = HS_NSECS (bytecount);
return tmp;
default:
pr_debug ("%s: bogus device speed!\n", usbcore_name);
return -1;
}
}
EXPORT_SYMBOL_GPL(usb_calc_bus_time);
/*-------------------------------------------------------------------------*/
/*
* Generic HC operations.
*/
/*-------------------------------------------------------------------------*/
/**
* usb_hcd_link_urb_to_ep - add an URB to its endpoint queue
* @hcd: host controller to which @urb was submitted
* @urb: URB being submitted
*
* Host controller drivers should call this routine in their enqueue()
* method. The HCD's private spinlock must be held and interrupts must
* be disabled. The actions carried out here are required for URB
* submission, as well as for endpoint shutdown and for usb_kill_urb.
*
* Return: 0 for no error, otherwise a negative error code (in which case
* the enqueue() method must fail). If no error occurs but enqueue() fails
* anyway, it must call usb_hcd_unlink_urb_from_ep() before releasing
* the private spinlock and returning.
*/
int usb_hcd_link_urb_to_ep(struct usb_hcd *hcd, struct urb *urb)
{
int rc = 0;
spin_lock(&hcd_urb_list_lock);
/* Check that the URB isn't being killed */
if (unlikely(atomic_read(&urb->reject))) {
rc = -EPERM;
goto done;
}
if (unlikely(!urb->ep->enabled)) {
rc = -ENOENT;
goto done;
}
if (unlikely(!urb->dev->can_submit)) {
rc = -EHOSTUNREACH;
goto done;
}
/*
* Check the host controller's state and add the URB to the
* endpoint's queue.
*/
if (HCD_RH_RUNNING(hcd)) {
urb->unlinked = 0;
list_add_tail(&urb->urb_list, &urb->ep->urb_list);
} else {
rc = -ESHUTDOWN;
goto done;
}
done:
spin_unlock(&hcd_urb_list_lock);
return rc;
}
EXPORT_SYMBOL_GPL(usb_hcd_link_urb_to_ep);
/**
* usb_hcd_check_unlink_urb - check whether an URB may be unlinked
* @hcd: host controller to which @urb was submitted
* @urb: URB being checked for unlinkability
* @status: error code to store in @urb if the unlink succeeds
*
* Host controller drivers should call this routine in their dequeue()
* method. The HCD's private spinlock must be held and interrupts must
* be disabled. The actions carried out here are required for making
* sure than an unlink is valid.
*
* Return: 0 for no error, otherwise a negative error code (in which case
* the dequeue() method must fail). The possible error codes are:
*
* -EIDRM: @urb was not submitted or has already completed.
* The completion function may not have been called yet.
*
* -EBUSY: @urb has already been unlinked.
*/
int usb_hcd_check_unlink_urb(struct usb_hcd *hcd, struct urb *urb,
int status)
{
struct list_head *tmp;
/* insist the urb is still queued */
list_for_each(tmp, &urb->ep->urb_list) {
if (tmp == &urb->urb_list)
break;
}
if (tmp != &urb->urb_list)
return -EIDRM;
/* Any status except -EINPROGRESS means something already started to
* unlink this URB from the hardware. So there's no more work to do.
*/
if (urb->unlinked)
return -EBUSY;
urb->unlinked = status;
return 0;
}
EXPORT_SYMBOL_GPL(usb_hcd_check_unlink_urb);
/**
* usb_hcd_unlink_urb_from_ep - remove an URB from its endpoint queue
* @hcd: host controller to which @urb was submitted
* @urb: URB being unlinked
*
* Host controller drivers should call this routine before calling
* usb_hcd_giveback_urb(). The HCD's private spinlock must be held and
* interrupts must be disabled. The actions carried out here are required
* for URB completion.
*/
void usb_hcd_unlink_urb_from_ep(struct usb_hcd *hcd, struct urb *urb)
{
/* clear all state linking urb to this dev (and hcd) */
spin_lock(&hcd_urb_list_lock);
list_del_init(&urb->urb_list);
spin_unlock(&hcd_urb_list_lock);
}
EXPORT_SYMBOL_GPL(usb_hcd_unlink_urb_from_ep);
/*
* Some usb host controllers can only perform dma using a small SRAM area.
* The usb core itself is however optimized for host controllers that can dma
* using regular system memory - like pci devices doing bus mastering.
*
* To support host controllers with limited dma capabilities we provide dma
* bounce buffers. This feature can be enabled by initializing
* hcd->localmem_pool using usb_hcd_setup_local_mem().
*
* The initialized hcd->localmem_pool then tells the usb code to allocate all
* data for dma using the genalloc API.
*
* So, to summarize...
*
* - We need "local" memory, canonical example being
* a small SRAM on a discrete controller being the
* only memory that the controller can read ...
* (a) "normal" kernel memory is no good, and
* (b) there's not enough to share
*
* - So we use that, even though the primary requirement
* is that the memory be "local" (hence addressable
* by that device), not "coherent".
*
*/
static int hcd_alloc_coherent(struct usb_bus *bus,
gfp_t mem_flags, dma_addr_t *dma_handle,
void **vaddr_handle, size_t size,
enum dma_data_direction dir)
{
unsigned char *vaddr;
if (*vaddr_handle == NULL) {
WARN_ON_ONCE(1);
return -EFAULT;
}
vaddr = hcd_buffer_alloc(bus, size + sizeof(vaddr),
mem_flags, dma_handle);
if (!vaddr)
return -ENOMEM;
/*
* Store the virtual address of the buffer at the end
* of the allocated dma buffer. The size of the buffer
* may be uneven so use unaligned functions instead
* of just rounding up. It makes sense to optimize for
* memory footprint over access speed since the amount
* of memory available for dma may be limited.
*/
put_unaligned((unsigned long)*vaddr_handle,
(unsigned long *)(vaddr + size));
if (dir == DMA_TO_DEVICE)
memcpy(vaddr, *vaddr_handle, size);
*vaddr_handle = vaddr;
return 0;
}
static void hcd_free_coherent(struct usb_bus *bus, dma_addr_t *dma_handle,
void **vaddr_handle, size_t size,
enum dma_data_direction dir)
{
unsigned char *vaddr = *vaddr_handle;
vaddr = (void *)get_unaligned((unsigned long *)(vaddr + size));
if (dir == DMA_FROM_DEVICE)
memcpy(vaddr, *vaddr_handle, size);
hcd_buffer_free(bus, size + sizeof(vaddr), *vaddr_handle, *dma_handle);
*vaddr_handle = vaddr;
*dma_handle = 0;
}
void usb_hcd_unmap_urb_setup_for_dma(struct usb_hcd *hcd, struct urb *urb)
{
if (IS_ENABLED(CONFIG_HAS_DMA) &&
(urb->transfer_flags & URB_SETUP_MAP_SINGLE))
dma_unmap_single(hcd->self.sysdev,
urb->setup_dma,
sizeof(struct usb_ctrlrequest),
DMA_TO_DEVICE);
else if (urb->transfer_flags & URB_SETUP_MAP_LOCAL)
hcd_free_coherent(urb->dev->bus,
&urb->setup_dma,
(void **) &urb->setup_packet,
sizeof(struct usb_ctrlrequest),
DMA_TO_DEVICE);
/* Make it safe to call this routine more than once */
urb->transfer_flags &= ~(URB_SETUP_MAP_SINGLE | URB_SETUP_MAP_LOCAL);
}
EXPORT_SYMBOL_GPL(usb_hcd_unmap_urb_setup_for_dma);
static void unmap_urb_for_dma(struct usb_hcd *hcd, struct urb *urb)
{
if (hcd->driver->unmap_urb_for_dma)
hcd->driver->unmap_urb_for_dma(hcd, urb);
else
usb_hcd_unmap_urb_for_dma(hcd, urb);
}
void usb_hcd_unmap_urb_for_dma(struct usb_hcd *hcd, struct urb *urb)
{
enum dma_data_direction dir;
usb_hcd_unmap_urb_setup_for_dma(hcd, urb);
dir = usb_urb_dir_in(urb) ? DMA_FROM_DEVICE : DMA_TO_DEVICE;
if (IS_ENABLED(CONFIG_HAS_DMA) &&
(urb->transfer_flags & URB_DMA_MAP_SG))
dma_unmap_sg(hcd->self.sysdev,
urb->sg,
urb->num_sgs,
dir);
else if (IS_ENABLED(CONFIG_HAS_DMA) &&
(urb->transfer_flags & URB_DMA_MAP_PAGE))
dma_unmap_page(hcd->self.sysdev,
urb->transfer_dma,
urb->transfer_buffer_length,
dir);
else if (IS_ENABLED(CONFIG_HAS_DMA) &&
(urb->transfer_flags & URB_DMA_MAP_SINGLE))
dma_unmap_single(hcd->self.sysdev,
urb->transfer_dma,
urb->transfer_buffer_length,
dir);
else if (urb->transfer_flags & URB_MAP_LOCAL)
hcd_free_coherent(urb->dev->bus,
&urb->transfer_dma,
&urb->transfer_buffer,
urb->transfer_buffer_length,
dir);
/* Make it safe to call this routine more than once */
urb->transfer_flags &= ~(URB_DMA_MAP_SG | URB_DMA_MAP_PAGE |
URB_DMA_MAP_SINGLE | URB_MAP_LOCAL);
}
EXPORT_SYMBOL_GPL(usb_hcd_unmap_urb_for_dma);
static int map_urb_for_dma(struct usb_hcd *hcd, struct urb *urb,
gfp_t mem_flags)
{
if (hcd->driver->map_urb_for_dma)
return hcd->driver->map_urb_for_dma(hcd, urb, mem_flags);
else
return usb_hcd_map_urb_for_dma(hcd, urb, mem_flags);
}
int usb_hcd_map_urb_for_dma(struct usb_hcd *hcd, struct urb *urb,
gfp_t mem_flags)
{
enum dma_data_direction dir;
int ret = 0;
/* Map the URB's buffers for DMA access.
* Lower level HCD code should use *_dma exclusively,
* unless it uses pio or talks to another transport,
* or uses the provided scatter gather list for bulk.
*/
if (usb_endpoint_xfer_control(&urb->ep->desc)) {
if (hcd->self.uses_pio_for_control)
return ret;
if (hcd->localmem_pool) {
ret = hcd_alloc_coherent(
urb->dev->bus, mem_flags,
&urb->setup_dma,
(void **)&urb->setup_packet,
sizeof(struct usb_ctrlrequest),
DMA_TO_DEVICE);
if (ret)
return ret;
urb->transfer_flags |= URB_SETUP_MAP_LOCAL;
} else if (hcd_uses_dma(hcd)) {
if (object_is_on_stack(urb->setup_packet)) {
WARN_ONCE(1, "setup packet is on stack\n");
return -EAGAIN;
}
urb->setup_dma = dma_map_single(
hcd->self.sysdev,
urb->setup_packet,
sizeof(struct usb_ctrlrequest),
DMA_TO_DEVICE);
if (dma_mapping_error(hcd->self.sysdev,
urb->setup_dma))
return -EAGAIN;
urb->transfer_flags |= URB_SETUP_MAP_SINGLE;
}
}
dir = usb_urb_dir_in(urb) ? DMA_FROM_DEVICE : DMA_TO_DEVICE;
if (urb->transfer_buffer_length != 0
&& !(urb->transfer_flags & URB_NO_TRANSFER_DMA_MAP)) {
if (hcd->localmem_pool) {
ret = hcd_alloc_coherent(
urb->dev->bus, mem_flags,
&urb->transfer_dma,
&urb->transfer_buffer,
urb->transfer_buffer_length,
dir);
if (ret == 0)
urb->transfer_flags |= URB_MAP_LOCAL;
} else if (hcd_uses_dma(hcd)) {
if (urb->num_sgs) {
int n;
/* We don't support sg for isoc transfers ! */
if (usb_endpoint_xfer_isoc(&urb->ep->desc)) {
WARN_ON(1);
return -EINVAL;
}
n = dma_map_sg(
hcd->self.sysdev,
urb->sg,
urb->num_sgs,
dir);
if (n <= 0)
ret = -EAGAIN;
else
urb->transfer_flags |= URB_DMA_MAP_SG;
urb->num_mapped_sgs = n;
if (n != urb->num_sgs)
urb->transfer_flags |=
URB_DMA_SG_COMBINED;
} else if (urb->sg) {
struct scatterlist *sg = urb->sg;
urb->transfer_dma = dma_map_page(
hcd->self.sysdev,
sg_page(sg),
sg->offset,
urb->transfer_buffer_length,
dir);
if (dma_mapping_error(hcd->self.sysdev,
urb->transfer_dma))
ret = -EAGAIN;
else
urb->transfer_flags |= URB_DMA_MAP_PAGE;
} else if (object_is_on_stack(urb->transfer_buffer)) {
WARN_ONCE(1, "transfer buffer is on stack\n");
ret = -EAGAIN;
} else {
urb->transfer_dma = dma_map_single(
hcd->self.sysdev,
urb->transfer_buffer,
urb->transfer_buffer_length,
dir);
if (dma_mapping_error(hcd->self.sysdev,
urb->transfer_dma))
ret = -EAGAIN;
else
urb->transfer_flags |= URB_DMA_MAP_SINGLE;
}
}
if (ret && (urb->transfer_flags & (URB_SETUP_MAP_SINGLE |
URB_SETUP_MAP_LOCAL)))
usb_hcd_unmap_urb_for_dma(hcd, urb);
}
return ret;
}
EXPORT_SYMBOL_GPL(usb_hcd_map_urb_for_dma);
/*-------------------------------------------------------------------------*/
/* may be called in any context with a valid urb->dev usecount
* caller surrenders "ownership" of urb
* expects usb_submit_urb() to have sanity checked and conditioned all
* inputs in the urb
*/
int usb_hcd_submit_urb (struct urb *urb, gfp_t mem_flags)
{
int status;
struct usb_hcd *hcd = bus_to_hcd(urb->dev->bus);
/* increment urb's reference count as part of giving it to the HCD
* (which will control it). HCD guarantees that it either returns
* an error or calls giveback(), but not both.
*/
usb_get_urb(urb);
atomic_inc(&urb->use_count);
atomic_inc(&urb->dev->urbnum);
usbmon_urb_submit(&hcd->self, urb);
/* NOTE requirements on root-hub callers (usbfs and the hub
* driver, for now): URBs' urb->transfer_buffer must be
* valid and usb_buffer_{sync,unmap}() not be needed, since
* they could clobber root hub response data. Also, control
* URBs must be submitted in process context with interrupts
* enabled.
*/
if (is_root_hub(urb->dev)) {
status = rh_urb_enqueue(hcd, urb);
} else {
status = map_urb_for_dma(hcd, urb, mem_flags);
if (likely(status == 0)) {
status = hcd->driver->urb_enqueue(hcd, urb, mem_flags);
if (unlikely(status))
unmap_urb_for_dma(hcd, urb);
}
}
if (unlikely(status)) {
usbmon_urb_submit_error(&hcd->self, urb, status);
urb->hcpriv = NULL;
INIT_LIST_HEAD(&urb->urb_list);
atomic_dec(&urb->use_count);
/*
* Order the write of urb->use_count above before the read
* of urb->reject below. Pairs with the memory barriers in
* usb_kill_urb() and usb_poison_urb().
*/
smp_mb__after_atomic();
atomic_dec(&urb->dev->urbnum);
if (atomic_read(&urb->reject))
wake_up(&usb_kill_urb_queue);
usb_put_urb(urb);
}
return status;
}
/*-------------------------------------------------------------------------*/
/* this makes the hcd giveback() the urb more quickly, by kicking it
* off hardware queues (which may take a while) and returning it as
* soon as practical. we've already set up the urb's return status,
* but we can't know if the callback completed already.
*/
static int unlink1(struct usb_hcd *hcd, struct urb *urb, int status)
{
int value;
if (is_root_hub(urb->dev))
value = usb_rh_urb_dequeue(hcd, urb, status);
else {
/* The only reason an HCD might fail this call is if
* it has not yet fully queued the urb to begin with.
* Such failures should be harmless. */
value = hcd->driver->urb_dequeue(hcd, urb, status);
}
return value;
}
/*
* called in any context
*
* caller guarantees urb won't be recycled till both unlink()
* and the urb's completion function return
*/
int usb_hcd_unlink_urb (struct urb *urb, int status)
{
struct usb_hcd *hcd;
struct usb_device *udev = urb->dev;
int retval = -EIDRM;
unsigned long flags;
/* Prevent the device and bus from going away while
* the unlink is carried out. If they are already gone
* then urb->use_count must be 0, since disconnected
* devices can't have any active URBs.
*/
spin_lock_irqsave(&hcd_urb_unlink_lock, flags);
if (atomic_read(&urb->use_count) > 0) {
retval = 0;
usb_get_dev(udev);
}
spin_unlock_irqrestore(&hcd_urb_unlink_lock, flags);
if (retval == 0) {
hcd = bus_to_hcd(urb->dev->bus);
retval = unlink1(hcd, urb, status);
if (retval == 0)
retval = -EINPROGRESS;
else if (retval != -EIDRM && retval != -EBUSY)
dev_dbg(&udev->dev, "hcd_unlink_urb %pK fail %d\n",
urb, retval);
usb_put_dev(udev);
}
return retval;
}
/*-------------------------------------------------------------------------*/
static void __usb_hcd_giveback_urb(struct urb *urb)
{
struct usb_hcd *hcd = bus_to_hcd(urb->dev->bus);
struct usb_anchor *anchor = urb->anchor;
int status = urb->unlinked;
urb->hcpriv = NULL;
if (unlikely((urb->transfer_flags & URB_SHORT_NOT_OK) &&
urb->actual_length < urb->transfer_buffer_length &&
!status))
status = -EREMOTEIO;
unmap_urb_for_dma(hcd, urb);
usbmon_urb_complete(&hcd->self, urb, status);
usb_anchor_suspend_wakeups(anchor);
usb_unanchor_urb(urb);
if (likely(status == 0))
usb_led_activity(USB_LED_EVENT_HOST);
/* pass ownership to the completion handler */
urb->status = status;
/*
* This function can be called in task context inside another remote
* coverage collection section, but kcov doesn't support that kind of
* recursion yet. Only collect coverage in softirq context for now.
*/
kcov_remote_start_usb_softirq((u64)urb->dev->bus->busnum);
urb->complete(urb);
kcov_remote_stop_softirq();
usb_anchor_resume_wakeups(anchor);
atomic_dec(&urb->use_count);
/*
* Order the write of urb->use_count above before the read
* of urb->reject below. Pairs with the memory barriers in
* usb_kill_urb() and usb_poison_urb().
*/
smp_mb__after_atomic();
if (unlikely(atomic_read(&urb->reject)))
wake_up(&usb_kill_urb_queue);
usb_put_urb(urb);
}
static void usb_giveback_urb_bh(struct tasklet_struct *t)
{
struct giveback_urb_bh *bh = from_tasklet(bh, t, bh);
struct list_head local_list;
spin_lock_irq(&bh->lock);
bh->running = true;
list_replace_init(&bh->head, &local_list);
spin_unlock_irq(&bh->lock);
while (!list_empty(&local_list)) {
struct urb *urb;
urb = list_entry(local_list.next, struct urb, urb_list);
list_del_init(&urb->urb_list);
bh->completing_ep = urb->ep;
__usb_hcd_giveback_urb(urb);
bh->completing_ep = NULL;
}
/*
* giveback new URBs next time to prevent this function
* from not exiting for a long time.
*/
spin_lock_irq(&bh->lock);
if (!list_empty(&bh->head)) {
if (bh->high_prio)
tasklet_hi_schedule(&bh->bh);
else
tasklet_schedule(&bh->bh);
}
bh->running = false;
spin_unlock_irq(&bh->lock);
}
/**
* usb_hcd_giveback_urb - return URB from HCD to device driver
* @hcd: host controller returning the URB
* @urb: urb being returned to the USB device driver.
* @status: completion status code for the URB.
*
* Context: atomic. The completion callback is invoked in caller's context.
* For HCDs with HCD_BH flag set, the completion callback is invoked in tasklet
* context (except for URBs submitted to the root hub which always complete in
* caller's context).
*
* This hands the URB from HCD to its USB device driver, using its
* completion function. The HCD has freed all per-urb resources
* (and is done using urb->hcpriv). It also released all HCD locks;
* the device driver won't cause problems if it frees, modifies,
* or resubmits this URB.
*
* If @urb was unlinked, the value of @status will be overridden by
* @urb->unlinked. Erroneous short transfers are detected in case
* the HCD hasn't checked for them.
*/
void usb_hcd_giveback_urb(struct usb_hcd *hcd, struct urb *urb, int status)
{
struct giveback_urb_bh *bh;
bool running;
/* pass status to tasklet via unlinked */
if (likely(!urb->unlinked))
urb->unlinked = status;
if (!hcd_giveback_urb_in_bh(hcd) && !is_root_hub(urb->dev)) {
__usb_hcd_giveback_urb(urb);
return;
}
if (usb_pipeisoc(urb->pipe) || usb_pipeint(urb->pipe))
bh = &hcd->high_prio_bh;
else
bh = &hcd->low_prio_bh;
spin_lock(&bh->lock);
list_add_tail(&urb->urb_list, &bh->head);
running = bh->running;
spin_unlock(&bh->lock);
if (running)
;
else if (bh->high_prio)
tasklet_hi_schedule(&bh->bh);
else
tasklet_schedule(&bh->bh);
}
EXPORT_SYMBOL_GPL(usb_hcd_giveback_urb);
/*-------------------------------------------------------------------------*/
/* Cancel all URBs pending on this endpoint and wait for the endpoint's
* queue to drain completely. The caller must first insure that no more
* URBs can be submitted for this endpoint.
*/
void usb_hcd_flush_endpoint(struct usb_device *udev,
struct usb_host_endpoint *ep)
{
struct usb_hcd *hcd;
struct urb *urb;
if (!ep)
return;
might_sleep();
hcd = bus_to_hcd(udev->bus);
/* No more submits can occur */
spin_lock_irq(&hcd_urb_list_lock);
rescan:
list_for_each_entry_reverse(urb, &ep->urb_list, urb_list) {
int is_in;
if (urb->unlinked)
continue;
usb_get_urb (urb);
is_in = usb_urb_dir_in(urb);
spin_unlock(&hcd_urb_list_lock);
/* kick hcd */
unlink1(hcd, urb, -ESHUTDOWN);
dev_dbg (hcd->self.controller,
"shutdown urb %pK ep%d%s-%s\n",
urb, usb_endpoint_num(&ep->desc),
is_in ? "in" : "out",
usb_ep_type_string(usb_endpoint_type(&ep->desc)));
usb_put_urb (urb);
/* list contents may have changed */
spin_lock(&hcd_urb_list_lock);
goto rescan;
}
spin_unlock_irq(&hcd_urb_list_lock);
/* Wait until the endpoint queue is completely empty */
while (!list_empty (&ep->urb_list)) {
spin_lock_irq(&hcd_urb_list_lock);
/* The list may have changed while we acquired the spinlock */
urb = NULL;
if (!list_empty (&ep->urb_list)) {
urb = list_entry (ep->urb_list.prev, struct urb,
urb_list);
usb_get_urb (urb);
}
spin_unlock_irq(&hcd_urb_list_lock);
if (urb) {
usb_kill_urb (urb);
usb_put_urb (urb);
}
}
}
/**
* usb_hcd_alloc_bandwidth - check whether a new bandwidth setting exceeds
* the bus bandwidth
* @udev: target &usb_device
* @new_config: new configuration to install
* @cur_alt: the current alternate interface setting
* @new_alt: alternate interface setting that is being installed
*
* To change configurations, pass in the new configuration in new_config,
* and pass NULL for cur_alt and new_alt.
*
* To reset a device's configuration (put the device in the ADDRESSED state),
* pass in NULL for new_config, cur_alt, and new_alt.
*
* To change alternate interface settings, pass in NULL for new_config,
* pass in the current alternate interface setting in cur_alt,
* and pass in the new alternate interface setting in new_alt.
*
* Return: An error if the requested bandwidth change exceeds the
* bus bandwidth or host controller internal resources.
*/
int usb_hcd_alloc_bandwidth(struct usb_device *udev,
struct usb_host_config *new_config,
struct usb_host_interface *cur_alt,
struct usb_host_interface *new_alt)
{
int num_intfs, i, j;
struct usb_host_interface *alt = NULL;
int ret = 0;
struct usb_hcd *hcd;
struct usb_host_endpoint *ep;
hcd = bus_to_hcd(udev->bus);
if (!hcd->driver->check_bandwidth)
return 0;
/* Configuration is being removed - set configuration 0 */
if (!new_config && !cur_alt) {
for (i = 1; i < 16; ++i) {
ep = udev->ep_out[i];
if (ep)
hcd->driver->drop_endpoint(hcd, udev, ep);
ep = udev->ep_in[i];
if (ep)
hcd->driver->drop_endpoint(hcd, udev, ep);
}
hcd->driver->check_bandwidth(hcd, udev);
return 0;
}
/* Check if the HCD says there's enough bandwidth. Enable all endpoints
* each interface's alt setting 0 and ask the HCD to check the bandwidth
* of the bus. There will always be bandwidth for endpoint 0, so it's
* ok to exclude it.
*/
if (new_config) {
num_intfs = new_config->desc.bNumInterfaces;
/* Remove endpoints (except endpoint 0, which is always on the
* schedule) from the old config from the schedule
*/
for (i = 1; i < 16; ++i) {
ep = udev->ep_out[i];
if (ep) {
ret = hcd->driver->drop_endpoint(hcd, udev, ep);
if (ret < 0)
goto reset;
}
ep = udev->ep_in[i];
if (ep) {
ret = hcd->driver->drop_endpoint(hcd, udev, ep);
if (ret < 0)
goto reset;
}
}
for (i = 0; i < num_intfs; ++i) {
struct usb_host_interface *first_alt;
int iface_num;
first_alt = &new_config->intf_cache[i]->altsetting[0];
iface_num = first_alt->desc.bInterfaceNumber;
/* Set up endpoints for alternate interface setting 0 */
alt = usb_find_alt_setting(new_config, iface_num, 0);
if (!alt)
/* No alt setting 0? Pick the first setting. */
alt = first_alt;
for (j = 0; j < alt->desc.bNumEndpoints; j++) {
ret = hcd->driver->add_endpoint(hcd, udev, &alt->endpoint[j]);
if (ret < 0)
goto reset;
}
}
}
if (cur_alt && new_alt) {
struct usb_interface *iface = usb_ifnum_to_if(udev,
cur_alt->desc.bInterfaceNumber);
if (!iface)
return -EINVAL;
if (iface->resetting_device) {
/*
* The USB core just reset the device, so the xHCI host
* and the device will think alt setting 0 is installed.
* However, the USB core will pass in the alternate
* setting installed before the reset as cur_alt. Dig
* out the alternate setting 0 structure, or the first
* alternate setting if a broken device doesn't have alt
* setting 0.
*/
cur_alt = usb_altnum_to_altsetting(iface, 0);
if (!cur_alt)
cur_alt = &iface->altsetting[0];
}
/* Drop all the endpoints in the current alt setting */
for (i = 0; i < cur_alt->desc.bNumEndpoints; i++) {
ret = hcd->driver->drop_endpoint(hcd, udev,
&cur_alt->endpoint[i]);
if (ret < 0)
goto reset;
}
/* Add all the endpoints in the new alt setting */
for (i = 0; i < new_alt->desc.bNumEndpoints; i++) {
ret = hcd->driver->add_endpoint(hcd, udev,
&new_alt->endpoint[i]);
if (ret < 0)
goto reset;
}
}
ret = hcd->driver->check_bandwidth(hcd, udev);
reset:
if (ret < 0)
hcd->driver->reset_bandwidth(hcd, udev);
return ret;
}
/* Disables the endpoint: synchronizes with the hcd to make sure all
* endpoint state is gone from hardware. usb_hcd_flush_endpoint() must
* have been called previously. Use for set_configuration, set_interface,
* driver removal, physical disconnect.
*
* example: a qh stored in ep->hcpriv, holding state related to endpoint
* type, maxpacket size, toggle, halt status, and scheduling.
*/
void usb_hcd_disable_endpoint(struct usb_device *udev,
struct usb_host_endpoint *ep)
{
struct usb_hcd *hcd;
might_sleep();
hcd = bus_to_hcd(udev->bus);
if (hcd->driver->endpoint_disable)
hcd->driver->endpoint_disable(hcd, ep);
}
/**
* usb_hcd_reset_endpoint - reset host endpoint state
* @udev: USB device.
* @ep: the endpoint to reset.
*
* Resets any host endpoint state such as the toggle bit, sequence
* number and current window.
*/
void usb_hcd_reset_endpoint(struct usb_device *udev,
struct usb_host_endpoint *ep)
{
struct usb_hcd *hcd = bus_to_hcd(udev->bus);
if (hcd->driver->endpoint_reset)
hcd->driver->endpoint_reset(hcd, ep);
else {
int epnum = usb_endpoint_num(&ep->desc);
int is_out = usb_endpoint_dir_out(&ep->desc);
int is_control = usb_endpoint_xfer_control(&ep->desc);
usb_settoggle(udev, epnum, is_out, 0);
if (is_control)
usb_settoggle(udev, epnum, !is_out, 0);
}
}
/**
* usb_alloc_streams - allocate bulk endpoint stream IDs.
* @interface: alternate setting that includes all endpoints.
* @eps: array of endpoints that need streams.
* @num_eps: number of endpoints in the array.
* @num_streams: number of streams to allocate.
* @mem_flags: flags hcd should use to allocate memory.
*
* Sets up a group of bulk endpoints to have @num_streams stream IDs available.
* Drivers may queue multiple transfers to different stream IDs, which may
* complete in a different order than they were queued.
*
* Return: On success, the number of allocated streams. On failure, a negative
* error code.
*/
int usb_alloc_streams(struct usb_interface *interface,
struct usb_host_endpoint **eps, unsigned int num_eps,
unsigned int num_streams, gfp_t mem_flags)
{
struct usb_hcd *hcd;
struct usb_device *dev;
int i, ret;
dev = interface_to_usbdev(interface);
hcd = bus_to_hcd(dev->bus);
if (!hcd->driver->alloc_streams || !hcd->driver->free_streams)
return -EINVAL;
if (dev->speed < USB_SPEED_SUPER)
return -EINVAL;
if (dev->state < USB_STATE_CONFIGURED)
return -ENODEV;
for (i = 0; i < num_eps; i++) {
/* Streams only apply to bulk endpoints. */
if (!usb_endpoint_xfer_bulk(&eps[i]->desc))
return -EINVAL;
/* Re-alloc is not allowed */
if (eps[i]->streams)
return -EINVAL;
}
ret = hcd->driver->alloc_streams(hcd, dev, eps, num_eps,
num_streams, mem_flags);
if (ret < 0)
return ret;
for (i = 0; i < num_eps; i++)
eps[i]->streams = ret;
return ret;
}
EXPORT_SYMBOL_GPL(usb_alloc_streams);
/**
* usb_free_streams - free bulk endpoint stream IDs.
* @interface: alternate setting that includes all endpoints.
* @eps: array of endpoints to remove streams from.
* @num_eps: number of endpoints in the array.
* @mem_flags: flags hcd should use to allocate memory.
*
* Reverts a group of bulk endpoints back to not using stream IDs.
* Can fail if we are given bad arguments, or HCD is broken.
*
* Return: 0 on success. On failure, a negative error code.
*/
int usb_free_streams(struct usb_interface *interface,
struct usb_host_endpoint **eps, unsigned int num_eps,
gfp_t mem_flags)
{
struct usb_hcd *hcd;
struct usb_device *dev;
int i, ret;
dev = interface_to_usbdev(interface);
hcd = bus_to_hcd(dev->bus);
if (dev->speed < USB_SPEED_SUPER)
return -EINVAL;
/* Double-free is not allowed */
for (i = 0; i < num_eps; i++)
if (!eps[i] || !eps[i]->streams)
return -EINVAL;
ret = hcd->driver->free_streams(hcd, dev, eps, num_eps, mem_flags);
if (ret < 0)
return ret;
for (i = 0; i < num_eps; i++)
eps[i]->streams = 0;
return ret;
}
EXPORT_SYMBOL_GPL(usb_free_streams);
/* Protect against drivers that try to unlink URBs after the device
* is gone, by waiting until all unlinks for @udev are finished.
* Since we don't currently track URBs by device, simply wait until
* nothing is running in the locked region of usb_hcd_unlink_urb().
*/
void usb_hcd_synchronize_unlinks(struct usb_device *udev)
{
spin_lock_irq(&hcd_urb_unlink_lock);
spin_unlock_irq(&hcd_urb_unlink_lock);
}
/*-------------------------------------------------------------------------*/
/* called in any context */
int usb_hcd_get_frame_number (struct usb_device *udev)
{
struct usb_hcd *hcd = bus_to_hcd(udev->bus);
if (!HCD_RH_RUNNING(hcd))
return -ESHUTDOWN;
return hcd->driver->get_frame_number (hcd);
}
/*-------------------------------------------------------------------------*/
#ifdef CONFIG_USB_HCD_TEST_MODE
static void usb_ehset_completion(struct urb *urb)
{
struct completion *done = urb->context;
complete(done);
}
/*
* Allocate and initialize a control URB. This request will be used by the
* EHSET SINGLE_STEP_SET_FEATURE test in which the DATA and STATUS stages
* of the GetDescriptor request are sent 15 seconds after the SETUP stage.
* Return NULL if failed.
*/
static struct urb *request_single_step_set_feature_urb(
struct usb_device *udev,
void *dr,
void *buf,
struct completion *done)
{
struct urb *urb;
struct usb_hcd *hcd = bus_to_hcd(udev->bus);
struct usb_host_endpoint *ep;
urb = usb_alloc_urb(0, GFP_KERNEL);
if (!urb)
return NULL;
urb->pipe = usb_rcvctrlpipe(udev, 0);
ep = (usb_pipein(urb->pipe) ? udev->ep_in : udev->ep_out)
[usb_pipeendpoint(urb->pipe)];
if (!ep) {
usb_free_urb(urb);
return NULL;
}
urb->ep = ep;
urb->dev = udev;
urb->setup_packet = (void *)dr;
urb->transfer_buffer = buf;
urb->transfer_buffer_length = USB_DT_DEVICE_SIZE;
urb->complete = usb_ehset_completion;
urb->status = -EINPROGRESS;
urb->actual_length = 0;
urb->transfer_flags = URB_DIR_IN;
usb_get_urb(urb);
atomic_inc(&urb->use_count);
atomic_inc(&urb->dev->urbnum);
if (map_urb_for_dma(hcd, urb, GFP_KERNEL)) {
usb_put_urb(urb);
usb_free_urb(urb);
return NULL;
}
urb->context = done;
return urb;
}
int ehset_single_step_set_feature(struct usb_hcd *hcd, int port)
{
int retval = -ENOMEM;
struct usb_ctrlrequest *dr;
struct urb *urb;
struct usb_device *udev;
struct usb_device_descriptor *buf;
DECLARE_COMPLETION_ONSTACK(done);
/* Obtain udev of the rhub's child port */
udev = usb_hub_find_child(hcd->self.root_hub, port);
if (!udev) {
dev_err(hcd->self.controller, "No device attached to the RootHub\n");
return -ENODEV;
}
buf = kmalloc(USB_DT_DEVICE_SIZE, GFP_KERNEL);
if (!buf)
return -ENOMEM;
dr = kmalloc(sizeof(struct usb_ctrlrequest), GFP_KERNEL);
if (!dr) {
kfree(buf);
return -ENOMEM;
}
/* Fill Setup packet for GetDescriptor */
dr->bRequestType = USB_DIR_IN;
dr->bRequest = USB_REQ_GET_DESCRIPTOR;
dr->wValue = cpu_to_le16(USB_DT_DEVICE << 8);
dr->wIndex = 0;
dr->wLength = cpu_to_le16(USB_DT_DEVICE_SIZE);
urb = request_single_step_set_feature_urb(udev, dr, buf, &done);
if (!urb)
goto cleanup;
/* Submit just the SETUP stage */
retval = hcd->driver->submit_single_step_set_feature(hcd, urb, 1);
if (retval)
goto out1;
if (!wait_for_completion_timeout(&done, msecs_to_jiffies(2000))) {
usb_kill_urb(urb);
retval = -ETIMEDOUT;
dev_err(hcd->self.controller,
"%s SETUP stage timed out on ep0\n", __func__);
goto out1;
}
msleep(15 * 1000);
/* Complete remaining DATA and STATUS stages using the same URB */
urb->status = -EINPROGRESS;
usb_get_urb(urb);
atomic_inc(&urb->use_count);
atomic_inc(&urb->dev->urbnum);
retval = hcd->driver->submit_single_step_set_feature(hcd, urb, 0);
if (!retval && !wait_for_completion_timeout(&done,
msecs_to_jiffies(2000))) {
usb_kill_urb(urb);
retval = -ETIMEDOUT;
dev_err(hcd->self.controller,
"%s IN stage timed out on ep0\n", __func__);
}
out1:
usb_free_urb(urb);
cleanup:
kfree(dr);
kfree(buf);
return retval;
}
EXPORT_SYMBOL_GPL(ehset_single_step_set_feature);
#endif /* CONFIG_USB_HCD_TEST_MODE */
/*-------------------------------------------------------------------------*/
#ifdef CONFIG_PM
int hcd_bus_suspend(struct usb_device *rhdev, pm_message_t msg)
{
struct usb_hcd *hcd = bus_to_hcd(rhdev->bus);
int status;
int old_state = hcd->state;
dev_dbg(&rhdev->dev, "bus %ssuspend, wakeup %d\n",
(PMSG_IS_AUTO(msg) ? "auto-" : ""),
rhdev->do_remote_wakeup);
if (HCD_DEAD(hcd)) {
dev_dbg(&rhdev->dev, "skipped %s of dead bus\n", "suspend");
return 0;
}
if (!hcd->driver->bus_suspend) {
status = -ENOENT;
} else {
clear_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
hcd->state = HC_STATE_QUIESCING;
status = hcd->driver->bus_suspend(hcd);
}
if (status == 0) {
usb_set_device_state(rhdev, USB_STATE_SUSPENDED);
hcd->state = HC_STATE_SUSPENDED;
if (!PMSG_IS_AUTO(msg))
usb_phy_roothub_suspend(hcd->self.sysdev,
hcd->phy_roothub);
/* Did we race with a root-hub wakeup event? */
if (rhdev->do_remote_wakeup) {
char buffer[6];
status = hcd->driver->hub_status_data(hcd, buffer);
if (status != 0) {
dev_dbg(&rhdev->dev, "suspend raced with wakeup event\n");
hcd_bus_resume(rhdev, PMSG_AUTO_RESUME);
status = -EBUSY;
}
}
} else {
spin_lock_irq(&hcd_root_hub_lock);
if (!HCD_DEAD(hcd)) {
set_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
hcd->state = old_state;
}
spin_unlock_irq(&hcd_root_hub_lock);
dev_dbg(&rhdev->dev, "bus %s fail, err %d\n",
"suspend", status);
}
return status;
}
int hcd_bus_resume(struct usb_device *rhdev, pm_message_t msg)
{
struct usb_hcd *hcd = bus_to_hcd(rhdev->bus);
int status;
int old_state = hcd->state;
dev_dbg(&rhdev->dev, "usb %sresume\n",
(PMSG_IS_AUTO(msg) ? "auto-" : ""));
if (HCD_DEAD(hcd)) {
dev_dbg(&rhdev->dev, "skipped %s of dead bus\n", "resume");
return 0;
}
if (!PMSG_IS_AUTO(msg)) {
status = usb_phy_roothub_resume(hcd->self.sysdev,
hcd->phy_roothub);
if (status)
return status;
}
if (!hcd->driver->bus_resume)
return -ENOENT;
if (HCD_RH_RUNNING(hcd))
return 0;
hcd->state = HC_STATE_RESUMING;
status = hcd->driver->bus_resume(hcd);
clear_bit(HCD_FLAG_WAKEUP_PENDING, &hcd->flags);
if (status == 0)
status = usb_phy_roothub_calibrate(hcd->phy_roothub);
if (status == 0) {
struct usb_device *udev;
int port1;
spin_lock_irq(&hcd_root_hub_lock);
if (!HCD_DEAD(hcd)) {
usb_set_device_state(rhdev, rhdev->actconfig
? USB_STATE_CONFIGURED
: USB_STATE_ADDRESS);
set_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
hcd->state = HC_STATE_RUNNING;
}
spin_unlock_irq(&hcd_root_hub_lock);
/*
* Check whether any of the enabled ports on the root hub are
* unsuspended. If they are then a TRSMRCY delay is needed
* (this is what the USB-2 spec calls a "global resume").
* Otherwise we can skip the delay.
*/
usb_hub_for_each_child(rhdev, port1, udev) {
if (udev->state != USB_STATE_NOTATTACHED &&
!udev->port_is_suspended) {
usleep_range(10000, 11000); /* TRSMRCY */
break;
}
}
} else {
hcd->state = old_state;
usb_phy_roothub_suspend(hcd->self.sysdev, hcd->phy_roothub);
dev_dbg(&rhdev->dev, "bus %s fail, err %d\n",
"resume", status);
if (status != -ESHUTDOWN)
usb_hc_died(hcd);
}
return status;
}
/* Workqueue routine for root-hub remote wakeup */
static void hcd_resume_work(struct work_struct *work)
{
struct usb_hcd *hcd = container_of(work, struct usb_hcd, wakeup_work);
struct usb_device *udev = hcd->self.root_hub;
usb_remote_wakeup(udev);
}
/**
* usb_hcd_resume_root_hub - called by HCD to resume its root hub
* @hcd: host controller for this root hub
*
* The USB host controller calls this function when its root hub is
* suspended (with the remote wakeup feature enabled) and a remote
* wakeup request is received. The routine submits a workqueue request
* to resume the root hub (that is, manage its downstream ports again).
*/
void usb_hcd_resume_root_hub (struct usb_hcd *hcd)
{
unsigned long flags;
spin_lock_irqsave (&hcd_root_hub_lock, flags);
if (hcd->rh_registered) {
pm_wakeup_event(&hcd->self.root_hub->dev, 0);
set_bit(HCD_FLAG_WAKEUP_PENDING, &hcd->flags);
queue_work(pm_wq, &hcd->wakeup_work);
}
spin_unlock_irqrestore (&hcd_root_hub_lock, flags);
}
EXPORT_SYMBOL_GPL(usb_hcd_resume_root_hub);
#endif /* CONFIG_PM */
/*-------------------------------------------------------------------------*/
#ifdef CONFIG_USB_OTG
/**
* usb_bus_start_enum - start immediate enumeration (for OTG)
* @bus: the bus (must use hcd framework)
* @port_num: 1-based number of port; usually bus->otg_port
* Context: atomic
*
* Starts enumeration, with an immediate reset followed later by
* hub_wq identifying and possibly configuring the device.
* This is needed by OTG controller drivers, where it helps meet
* HNP protocol timing requirements for starting a port reset.
*
* Return: 0 if successful.
*/
int usb_bus_start_enum(struct usb_bus *bus, unsigned port_num)
{
struct usb_hcd *hcd;
int status = -EOPNOTSUPP;
/* NOTE: since HNP can't start by grabbing the bus's address0_sem,
* boards with root hubs hooked up to internal devices (instead of
* just the OTG port) may need more attention to resetting...
*/
hcd = bus_to_hcd(bus);
if (port_num && hcd->driver->start_port_reset)
status = hcd->driver->start_port_reset(hcd, port_num);
/* allocate hub_wq shortly after (first) root port reset finishes;
* it may issue others, until at least 50 msecs have passed.
*/
if (status == 0)
mod_timer(&hcd->rh_timer, jiffies + msecs_to_jiffies(10));
return status;
}
EXPORT_SYMBOL_GPL(usb_bus_start_enum);
#endif
/*-------------------------------------------------------------------------*/
/**
* usb_hcd_irq - hook IRQs to HCD framework (bus glue)
* @irq: the IRQ being raised
* @__hcd: pointer to the HCD whose IRQ is being signaled
*
* If the controller isn't HALTed, calls the driver's irq handler.
* Checks whether the controller is now dead.
*
* Return: %IRQ_HANDLED if the IRQ was handled. %IRQ_NONE otherwise.
*/
irqreturn_t usb_hcd_irq (int irq, void *__hcd)
{
struct usb_hcd *hcd = __hcd;
irqreturn_t rc;
if (unlikely(HCD_DEAD(hcd) || !HCD_HW_ACCESSIBLE(hcd)))
rc = IRQ_NONE;
else if (hcd->driver->irq(hcd) == IRQ_NONE)
rc = IRQ_NONE;
else
rc = IRQ_HANDLED;
return rc;
}
EXPORT_SYMBOL_GPL(usb_hcd_irq);
/*-------------------------------------------------------------------------*/
/* Workqueue routine for when the root-hub has died. */
static void hcd_died_work(struct work_struct *work)
{
struct usb_hcd *hcd = container_of(work, struct usb_hcd, died_work);
static char *env[] = {
"ERROR=DEAD",
NULL
};
/* Notify user space that the host controller has died */
kobject_uevent_env(&hcd->self.root_hub->dev.kobj, KOBJ_OFFLINE, env);
}
/**
* usb_hc_died - report abnormal shutdown of a host controller (bus glue)
* @hcd: pointer to the HCD representing the controller
*
* This is called by bus glue to report a USB host controller that died
* while operations may still have been pending. It's called automatically
* by the PCI glue, so only glue for non-PCI busses should need to call it.
*
* Only call this function with the primary HCD.
*/
void usb_hc_died (struct usb_hcd *hcd)
{
unsigned long flags;
dev_err (hcd->self.controller, "HC died; cleaning up\n");
spin_lock_irqsave (&hcd_root_hub_lock, flags);
clear_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
set_bit(HCD_FLAG_DEAD, &hcd->flags);
if (hcd->rh_registered) {
clear_bit(HCD_FLAG_POLL_RH, &hcd->flags);
/* make hub_wq clean up old urbs and devices */
usb_set_device_state (hcd->self.root_hub,
USB_STATE_NOTATTACHED);
usb_kick_hub_wq(hcd->self.root_hub);
}
if (usb_hcd_is_primary_hcd(hcd) && hcd->shared_hcd) {
hcd = hcd->shared_hcd;
clear_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
set_bit(HCD_FLAG_DEAD, &hcd->flags);
if (hcd->rh_registered) {
clear_bit(HCD_FLAG_POLL_RH, &hcd->flags);
/* make hub_wq clean up old urbs and devices */
usb_set_device_state(hcd->self.root_hub,
USB_STATE_NOTATTACHED);
usb_kick_hub_wq(hcd->self.root_hub);
}
}
/* Handle the case where this function gets called with a shared HCD */
if (usb_hcd_is_primary_hcd(hcd))
schedule_work(&hcd->died_work);
else
schedule_work(&hcd->primary_hcd->died_work);
spin_unlock_irqrestore (&hcd_root_hub_lock, flags);
/* Make sure that the other roothub is also deallocated. */
}
EXPORT_SYMBOL_GPL (usb_hc_died);
/*-------------------------------------------------------------------------*/
static void init_giveback_urb_bh(struct giveback_urb_bh *bh)
{
spin_lock_init(&bh->lock);
INIT_LIST_HEAD(&bh->head);
tasklet_setup(&bh->bh, usb_giveback_urb_bh);
}
struct usb_hcd *__usb_create_hcd(const struct hc_driver *driver,
struct device *sysdev, struct device *dev, const char *bus_name,
struct usb_hcd *primary_hcd)
{
struct usb_hcd *hcd;
hcd = kzalloc(sizeof(*hcd) + driver->hcd_priv_size, GFP_KERNEL);
if (!hcd)
return NULL;
if (primary_hcd == NULL) {
hcd->address0_mutex = kmalloc(sizeof(*hcd->address0_mutex),
GFP_KERNEL);
if (!hcd->address0_mutex) {
kfree(hcd);
dev_dbg(dev, "hcd address0 mutex alloc failed\n");
return NULL;
}
mutex_init(hcd->address0_mutex);
hcd->bandwidth_mutex = kmalloc(sizeof(*hcd->bandwidth_mutex),
GFP_KERNEL);
if (!hcd->bandwidth_mutex) {
kfree(hcd->address0_mutex);
kfree(hcd);
dev_dbg(dev, "hcd bandwidth mutex alloc failed\n");
return NULL;
}
mutex_init(hcd->bandwidth_mutex);
dev_set_drvdata(dev, hcd);
} else {
mutex_lock(&usb_port_peer_mutex);
hcd->address0_mutex = primary_hcd->address0_mutex;
hcd->bandwidth_mutex = primary_hcd->bandwidth_mutex;
hcd->primary_hcd = primary_hcd;
primary_hcd->primary_hcd = primary_hcd;
hcd->shared_hcd = primary_hcd;
primary_hcd->shared_hcd = hcd;
mutex_unlock(&usb_port_peer_mutex);
}
kref_init(&hcd->kref);
usb_bus_init(&hcd->self);
hcd->self.controller = dev;
hcd->self.sysdev = sysdev;
hcd->self.bus_name = bus_name;
timer_setup(&hcd->rh_timer, rh_timer_func, 0);
#ifdef CONFIG_PM
INIT_WORK(&hcd->wakeup_work, hcd_resume_work);
#endif
INIT_WORK(&hcd->died_work, hcd_died_work);
hcd->driver = driver;
hcd->speed = driver->flags & HCD_MASK;
hcd->product_desc = (driver->product_desc) ? driver->product_desc :
"USB Host Controller";
return hcd;
}
EXPORT_SYMBOL_GPL(__usb_create_hcd);
/**
* usb_create_shared_hcd - create and initialize an HCD structure
* @driver: HC driver that will use this hcd
* @dev: device for this HC, stored in hcd->self.controller
* @bus_name: value to store in hcd->self.bus_name
* @primary_hcd: a pointer to the usb_hcd structure that is sharing the
* PCI device. Only allocate certain resources for the primary HCD
*
* Context: task context, might sleep.
*
* Allocate a struct usb_hcd, with extra space at the end for the
* HC driver's private data. Initialize the generic members of the
* hcd structure.
*
* Return: On success, a pointer to the created and initialized HCD structure.
* On failure (e.g. if memory is unavailable), %NULL.
*/
struct usb_hcd *usb_create_shared_hcd(const struct hc_driver *driver,
struct device *dev, const char *bus_name,
struct usb_hcd *primary_hcd)
{
return __usb_create_hcd(driver, dev, dev, bus_name, primary_hcd);
}
EXPORT_SYMBOL_GPL(usb_create_shared_hcd);
/**
* usb_create_hcd - create and initialize an HCD structure
* @driver: HC driver that will use this hcd
* @dev: device for this HC, stored in hcd->self.controller
* @bus_name: value to store in hcd->self.bus_name
*
* Context: task context, might sleep.
*
* Allocate a struct usb_hcd, with extra space at the end for the
* HC driver's private data. Initialize the generic members of the
* hcd structure.
*
* Return: On success, a pointer to the created and initialized HCD
* structure. On failure (e.g. if memory is unavailable), %NULL.
*/
struct usb_hcd *usb_create_hcd(const struct hc_driver *driver,
struct device *dev, const char *bus_name)
{
return __usb_create_hcd(driver, dev, dev, bus_name, NULL);
}
EXPORT_SYMBOL_GPL(usb_create_hcd);
/*
* Roothubs that share one PCI device must also share the bandwidth mutex.
* Don't deallocate the bandwidth_mutex until the last shared usb_hcd is
* deallocated.
*
* Make sure to deallocate the bandwidth_mutex only when the last HCD is
* freed. When hcd_release() is called for either hcd in a peer set,
* invalidate the peer's ->shared_hcd and ->primary_hcd pointers.
*/
static void hcd_release(struct kref *kref)
{
struct usb_hcd *hcd = container_of (kref, struct usb_hcd, kref);
mutex_lock(&usb_port_peer_mutex);
if (hcd->shared_hcd) {
struct usb_hcd *peer = hcd->shared_hcd;
peer->shared_hcd = NULL;
peer->primary_hcd = NULL;
} else {
kfree(hcd->address0_mutex);
kfree(hcd->bandwidth_mutex);
}
mutex_unlock(&usb_port_peer_mutex);
kfree(hcd);
}
struct usb_hcd *usb_get_hcd (struct usb_hcd *hcd)
{
if (hcd)
kref_get (&hcd->kref);
return hcd;
}
EXPORT_SYMBOL_GPL(usb_get_hcd);
void usb_put_hcd (struct usb_hcd *hcd)
{
if (hcd)
kref_put (&hcd->kref, hcd_release);
}
EXPORT_SYMBOL_GPL(usb_put_hcd);
int usb_hcd_is_primary_hcd(struct usb_hcd *hcd)
{
if (!hcd->primary_hcd)
return 1;
return hcd == hcd->primary_hcd;
}
EXPORT_SYMBOL_GPL(usb_hcd_is_primary_hcd);
int usb_hcd_find_raw_port_number(struct usb_hcd *hcd, int port1)
{
if (!hcd->driver->find_raw_port_number)
return port1;
return hcd->driver->find_raw_port_number(hcd, port1);
}
static int usb_hcd_request_irqs(struct usb_hcd *hcd,
unsigned int irqnum, unsigned long irqflags)
{
int retval;
if (hcd->driver->irq) {
snprintf(hcd->irq_descr, sizeof(hcd->irq_descr), "%s:usb%d",
hcd->driver->description, hcd->self.busnum);
retval = request_irq(irqnum, &usb_hcd_irq, irqflags,
hcd->irq_descr, hcd);
if (retval != 0) {
dev_err(hcd->self.controller,
"request interrupt %d failed\n",
irqnum);
return retval;
}
hcd->irq = irqnum;
dev_info(hcd->self.controller, "irq %d, %s 0x%08llx\n", irqnum,
(hcd->driver->flags & HCD_MEMORY) ?
"io mem" : "io base",
(unsigned long long)hcd->rsrc_start);
} else {
hcd->irq = 0;
if (hcd->rsrc_start)
dev_info(hcd->self.controller, "%s 0x%08llx\n",
(hcd->driver->flags & HCD_MEMORY) ?
"io mem" : "io base",
(unsigned long long)hcd->rsrc_start);
}
return 0;
}
/*
* Before we free this root hub, flush in-flight peering attempts
* and disable peer lookups
*/
static void usb_put_invalidate_rhdev(struct usb_hcd *hcd)
{
struct usb_device *rhdev;
mutex_lock(&usb_port_peer_mutex);
rhdev = hcd->self.root_hub;
hcd->self.root_hub = NULL;
mutex_unlock(&usb_port_peer_mutex);
usb_put_dev(rhdev);
}
/**
* usb_stop_hcd - Halt the HCD
* @hcd: the usb_hcd that has to be halted
*
* Stop the root-hub polling timer and invoke the HCD's ->stop callback.
*/
static void usb_stop_hcd(struct usb_hcd *hcd)
{
hcd->rh_pollable = 0;
clear_bit(HCD_FLAG_POLL_RH, &hcd->flags);
del_timer_sync(&hcd->rh_timer);
hcd->driver->stop(hcd);
hcd->state = HC_STATE_HALT;
/* In case the HCD restarted the timer, stop it again. */
clear_bit(HCD_FLAG_POLL_RH, &hcd->flags);
del_timer_sync(&hcd->rh_timer);
}
/**
* usb_add_hcd - finish generic HCD structure initialization and register
* @hcd: the usb_hcd structure to initialize
* @irqnum: Interrupt line to allocate
* @irqflags: Interrupt type flags
*
* Finish the remaining parts of generic HCD initialization: allocate the
* buffers of consistent memory, register the bus, request the IRQ line,
* and call the driver's reset() and start() routines.
*/
int usb_add_hcd(struct usb_hcd *hcd,
unsigned int irqnum, unsigned long irqflags)
{
int retval;
struct usb_device *rhdev;
struct usb_hcd *shared_hcd;
if (!hcd->skip_phy_initialization && usb_hcd_is_primary_hcd(hcd)) {
hcd->phy_roothub = usb_phy_roothub_alloc(hcd->self.sysdev);
if (IS_ERR(hcd->phy_roothub))
return PTR_ERR(hcd->phy_roothub);
retval = usb_phy_roothub_init(hcd->phy_roothub);
if (retval)
return retval;
retval = usb_phy_roothub_set_mode(hcd->phy_roothub,
PHY_MODE_USB_HOST_SS);
if (retval)
retval = usb_phy_roothub_set_mode(hcd->phy_roothub,
PHY_MODE_USB_HOST);
if (retval)
goto err_usb_phy_roothub_power_on;
retval = usb_phy_roothub_power_on(hcd->phy_roothub);
if (retval)
goto err_usb_phy_roothub_power_on;
}
dev_info(hcd->self.controller, "%s\n", hcd->product_desc);
switch (authorized_default) {
case USB_AUTHORIZE_NONE:
hcd->dev_policy = USB_DEVICE_AUTHORIZE_NONE;
break;
case USB_AUTHORIZE_ALL:
hcd->dev_policy = USB_DEVICE_AUTHORIZE_ALL;
break;
case USB_AUTHORIZE_INTERNAL:
hcd->dev_policy = USB_DEVICE_AUTHORIZE_INTERNAL;
break;
case USB_AUTHORIZE_WIRED:
default:
hcd->dev_policy = hcd->wireless ?
USB_DEVICE_AUTHORIZE_NONE : USB_DEVICE_AUTHORIZE_ALL;
break;
}
set_bit(HCD_FLAG_HW_ACCESSIBLE, &hcd->flags);
/* per default all interfaces are authorized */
set_bit(HCD_FLAG_INTF_AUTHORIZED, &hcd->flags);
/* HC is in reset state, but accessible. Now do the one-time init,
* bottom up so that hcds can customize the root hubs before hub_wq
* starts talking to them. (Note, bus id is assigned early too.)
*/
retval = hcd_buffer_create(hcd);
if (retval != 0) {
dev_dbg(hcd->self.sysdev, "pool alloc failed\n");
goto err_create_buf;
}
retval = usb_register_bus(&hcd->self);
if (retval < 0)
goto err_register_bus;
rhdev = usb_alloc_dev(NULL, &hcd->self, 0);
if (rhdev == NULL) {
dev_err(hcd->self.sysdev, "unable to allocate root hub\n");
retval = -ENOMEM;
goto err_allocate_root_hub;
}
mutex_lock(&usb_port_peer_mutex);
hcd->self.root_hub = rhdev;
mutex_unlock(&usb_port_peer_mutex);
rhdev->rx_lanes = 1;
rhdev->tx_lanes = 1;
rhdev->ssp_rate = USB_SSP_GEN_UNKNOWN;
switch (hcd->speed) {
case HCD_USB11:
rhdev->speed = USB_SPEED_FULL;
break;
case HCD_USB2:
rhdev->speed = USB_SPEED_HIGH;
break;
case HCD_USB25:
rhdev->speed = USB_SPEED_WIRELESS;
break;
case HCD_USB3:
rhdev->speed = USB_SPEED_SUPER;
break;
case HCD_USB32:
rhdev->rx_lanes = 2;
rhdev->tx_lanes = 2;
rhdev->ssp_rate = USB_SSP_GEN_2x2;
rhdev->speed = USB_SPEED_SUPER_PLUS;
break;
case HCD_USB31:
rhdev->ssp_rate = USB_SSP_GEN_2x1;
rhdev->speed = USB_SPEED_SUPER_PLUS;
break;
default:
retval = -EINVAL;
goto err_set_rh_speed;
}
/* wakeup flag init defaults to "everything works" for root hubs,
* but drivers can override it in reset() if needed, along with
* recording the overall controller's system wakeup capability.
*/
device_set_wakeup_capable(&rhdev->dev, 1);
/* HCD_FLAG_RH_RUNNING doesn't matter until the root hub is
* registered. But since the controller can die at any time,
* let's initialize the flag before touching the hardware.
*/
set_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
/* "reset" is misnamed; its role is now one-time init. the controller
* should already have been reset (and boot firmware kicked off etc).
*/
if (hcd->driver->reset) {
retval = hcd->driver->reset(hcd);
if (retval < 0) {
dev_err(hcd->self.controller, "can't setup: %d\n",
retval);
goto err_hcd_driver_setup;
}
}
hcd->rh_pollable = 1;
retval = usb_phy_roothub_calibrate(hcd->phy_roothub);
if (retval)
goto err_hcd_driver_setup;
/* NOTE: root hub and controller capabilities may not be the same */
if (device_can_wakeup(hcd->self.controller)
&& device_can_wakeup(&hcd->self.root_hub->dev))
dev_dbg(hcd->self.controller, "supports USB remote wakeup\n");
/* initialize tasklets */
init_giveback_urb_bh(&hcd->high_prio_bh);
hcd->high_prio_bh.high_prio = true;
init_giveback_urb_bh(&hcd->low_prio_bh);
/* enable irqs just before we start the controller,
* if the BIOS provides legacy PCI irqs.
*/
if (usb_hcd_is_primary_hcd(hcd) && irqnum) {
retval = usb_hcd_request_irqs(hcd, irqnum, irqflags);
if (retval)
goto err_request_irq;
}
hcd->state = HC_STATE_RUNNING;
retval = hcd->driver->start(hcd);
if (retval < 0) {
dev_err(hcd->self.controller, "startup error %d\n", retval);
goto err_hcd_driver_start;
}
/* starting here, usbcore will pay attention to the shared HCD roothub */
shared_hcd = hcd->shared_hcd;
if (!usb_hcd_is_primary_hcd(hcd) && shared_hcd && HCD_DEFER_RH_REGISTER(shared_hcd)) {
retval = register_root_hub(shared_hcd);
if (retval != 0)
goto err_register_root_hub;
if (shared_hcd->uses_new_polling && HCD_POLL_RH(shared_hcd))
usb_hcd_poll_rh_status(shared_hcd);
}
/* starting here, usbcore will pay attention to this root hub */
if (!HCD_DEFER_RH_REGISTER(hcd)) {
retval = register_root_hub(hcd);
if (retval != 0)
goto err_register_root_hub;
if (hcd->uses_new_polling && HCD_POLL_RH(hcd))
usb_hcd_poll_rh_status(hcd);
}
return retval;
err_register_root_hub:
usb_stop_hcd(hcd);
err_hcd_driver_start:
if (usb_hcd_is_primary_hcd(hcd) && hcd->irq > 0)
free_irq(irqnum, hcd);
err_request_irq:
err_hcd_driver_setup:
err_set_rh_speed:
usb_put_invalidate_rhdev(hcd);
err_allocate_root_hub:
usb_deregister_bus(&hcd->self);
err_register_bus:
hcd_buffer_destroy(hcd);
err_create_buf:
usb_phy_roothub_power_off(hcd->phy_roothub);
err_usb_phy_roothub_power_on:
usb_phy_roothub_exit(hcd->phy_roothub);
return retval;
}
EXPORT_SYMBOL_GPL(usb_add_hcd);
/**
* usb_remove_hcd - shutdown processing for generic HCDs
* @hcd: the usb_hcd structure to remove
*
* Context: task context, might sleep.
*
* Disconnects the root hub, then reverses the effects of usb_add_hcd(),
* invoking the HCD's stop() method.
*/
void usb_remove_hcd(struct usb_hcd *hcd)
{
struct usb_device *rhdev = hcd->self.root_hub;
bool rh_registered;
dev_info(hcd->self.controller, "remove, state %x\n", hcd->state);
usb_get_dev(rhdev);
clear_bit(HCD_FLAG_RH_RUNNING, &hcd->flags);
if (HC_IS_RUNNING (hcd->state))
hcd->state = HC_STATE_QUIESCING;
dev_dbg(hcd->self.controller, "roothub graceful disconnect\n");
spin_lock_irq (&hcd_root_hub_lock);
rh_registered = hcd->rh_registered;
hcd->rh_registered = 0;
spin_unlock_irq (&hcd_root_hub_lock);
#ifdef CONFIG_PM
cancel_work_sync(&hcd->wakeup_work);
#endif
cancel_work_sync(&hcd->died_work);
mutex_lock(&usb_bus_idr_lock);
if (rh_registered)
usb_disconnect(&rhdev); /* Sets rhdev to NULL */
mutex_unlock(&usb_bus_idr_lock);
/*
* tasklet_kill() isn't needed here because:
* - driver's disconnect() called from usb_disconnect() should
* make sure its URBs are completed during the disconnect()
* callback
*
* - it is too late to run complete() here since driver may have
* been removed already now
*/
/* Prevent any more root-hub status calls from the timer.
* The HCD might still restart the timer (if a port status change
* interrupt occurs), but usb_hcd_poll_rh_status() won't invoke
* the hub_status_data() callback.
*/
usb_stop_hcd(hcd);
if (usb_hcd_is_primary_hcd(hcd)) {
if (hcd->irq > 0)
free_irq(hcd->irq, hcd);
}
usb_deregister_bus(&hcd->self);
hcd_buffer_destroy(hcd);
usb_phy_roothub_power_off(hcd->phy_roothub);
usb_phy_roothub_exit(hcd->phy_roothub);
usb_put_invalidate_rhdev(hcd);
hcd->flags = 0;
}
EXPORT_SYMBOL_GPL(usb_remove_hcd);
void
usb_hcd_platform_shutdown(struct platform_device *dev)
{
struct usb_hcd *hcd = platform_get_drvdata(dev);
/* No need for pm_runtime_put(), we're shutting down */
pm_runtime_get_sync(&dev->dev);
if (hcd->driver->shutdown)
hcd->driver->shutdown(hcd);
}
EXPORT_SYMBOL_GPL(usb_hcd_platform_shutdown);
int usb_hcd_setup_local_mem(struct usb_hcd *hcd, phys_addr_t phys_addr,
dma_addr_t dma, size_t size)
{
int err;
void *local_mem;
hcd->localmem_pool = devm_gen_pool_create(hcd->self.sysdev, 4,
dev_to_node(hcd->self.sysdev),
dev_name(hcd->self.sysdev));
if (IS_ERR(hcd->localmem_pool))
return PTR_ERR(hcd->localmem_pool);
local_mem = devm_memremap(hcd->self.sysdev, phys_addr,
size, MEMREMAP_WC);
if (IS_ERR(local_mem))
return PTR_ERR(local_mem);
/*
* Here we pass a dma_addr_t but the arg type is a phys_addr_t.
* It's not backed by system memory and thus there's no kernel mapping
* for it.
*/
err = gen_pool_add_virt(hcd->localmem_pool, (unsigned long)local_mem,
dma, size, dev_to_node(hcd->self.sysdev));
if (err < 0) {
dev_err(hcd->self.sysdev, "gen_pool_add_virt failed with %d\n",
err);
return err;
}
return 0;
}
EXPORT_SYMBOL_GPL(usb_hcd_setup_local_mem);
/*-------------------------------------------------------------------------*/
const struct usb_mon_operations *mon_ops;
/*
* The registration is unlocked.
* We do it this way because we do not want to lock in hot paths.
*
* Notice that the code is minimally error-proof. Because usbmon needs
* symbols from usbcore, usbcore gets referenced and cannot be unloaded first.
*/
int usb_mon_register(const struct usb_mon_operations *ops)
{
if (mon_ops)
return -EBUSY;
mon_ops = ops;
mb();
return 0;
}
EXPORT_SYMBOL_GPL (usb_mon_register);
void usb_mon_deregister (void)
{
if (mon_ops == NULL) {
printk(KERN_ERR "USB: monitor was not registered\n");
return;
}
mon_ops = NULL;
mb();
}
EXPORT_SYMBOL_GPL (usb_mon_deregister);