refactor(logging): 迁移日志记录到 Zerolog 并优化错误处理
- 将日志记录库从 Logrus 替换为 Zerolog,提升性能和灵活性 - 更新各个模块的日志记录方式,确保一致性 - 优化错误处理逻辑,确保在发生错误时能够正确记录并传递错误信息 - 移除不再使用的错误处理字段,简化代码结构 - 更新相关文档以反映新的日志记录和错误处理机制
This commit is contained in:
+141
-3
@@ -4,9 +4,7 @@
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package unix
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import (
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"unsafe"
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)
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import "unsafe"
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// IoctlRetInt performs an ioctl operation specified by req on a device
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// associated with opened file descriptor fd, and returns a non-negative
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@@ -60,6 +58,102 @@ func IoctlGetEthtoolDrvinfo(fd int, ifname string) (*EthtoolDrvinfo, error) {
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return &value, err
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}
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// IoctlGetEthtoolTsInfo fetches ethtool timestamping and PHC
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// association for the network device specified by ifname.
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func IoctlGetEthtoolTsInfo(fd int, ifname string) (*EthtoolTsInfo, error) {
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ifr, err := NewIfreq(ifname)
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if err != nil {
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return nil, err
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}
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value := EthtoolTsInfo{Cmd: ETHTOOL_GET_TS_INFO}
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ifrd := ifr.withData(unsafe.Pointer(&value))
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err = ioctlIfreqData(fd, SIOCETHTOOL, &ifrd)
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return &value, err
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}
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// IoctlGetHwTstamp retrieves the hardware timestamping configuration
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// for the network device specified by ifname.
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func IoctlGetHwTstamp(fd int, ifname string) (*HwTstampConfig, error) {
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ifr, err := NewIfreq(ifname)
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if err != nil {
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return nil, err
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}
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value := HwTstampConfig{}
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ifrd := ifr.withData(unsafe.Pointer(&value))
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err = ioctlIfreqData(fd, SIOCGHWTSTAMP, &ifrd)
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return &value, err
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}
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// IoctlSetHwTstamp updates the hardware timestamping configuration for
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// the network device specified by ifname.
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func IoctlSetHwTstamp(fd int, ifname string, cfg *HwTstampConfig) error {
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ifr, err := NewIfreq(ifname)
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if err != nil {
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return err
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}
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ifrd := ifr.withData(unsafe.Pointer(cfg))
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return ioctlIfreqData(fd, SIOCSHWTSTAMP, &ifrd)
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}
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// FdToClockID derives the clock ID from the file descriptor number
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// - see clock_gettime(3), FD_TO_CLOCKID macros. The resulting ID is
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// suitable for system calls like ClockGettime.
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func FdToClockID(fd int) int32 { return int32((int(^fd) << 3) | 3) }
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// IoctlPtpClockGetcaps returns the description of a given PTP device.
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func IoctlPtpClockGetcaps(fd int) (*PtpClockCaps, error) {
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var value PtpClockCaps
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err := ioctlPtr(fd, PTP_CLOCK_GETCAPS2, unsafe.Pointer(&value))
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return &value, err
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}
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// IoctlPtpSysOffsetPrecise returns a description of the clock
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// offset compared to the system clock.
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func IoctlPtpSysOffsetPrecise(fd int) (*PtpSysOffsetPrecise, error) {
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var value PtpSysOffsetPrecise
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err := ioctlPtr(fd, PTP_SYS_OFFSET_PRECISE2, unsafe.Pointer(&value))
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return &value, err
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}
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// IoctlPtpSysOffsetExtended returns an extended description of the
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// clock offset compared to the system clock. The samples parameter
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// specifies the desired number of measurements.
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func IoctlPtpSysOffsetExtended(fd int, samples uint) (*PtpSysOffsetExtended, error) {
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value := PtpSysOffsetExtended{Samples: uint32(samples)}
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err := ioctlPtr(fd, PTP_SYS_OFFSET_EXTENDED2, unsafe.Pointer(&value))
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return &value, err
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}
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// IoctlPtpPinGetfunc returns the configuration of the specified
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// I/O pin on given PTP device.
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func IoctlPtpPinGetfunc(fd int, index uint) (*PtpPinDesc, error) {
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value := PtpPinDesc{Index: uint32(index)}
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err := ioctlPtr(fd, PTP_PIN_GETFUNC2, unsafe.Pointer(&value))
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return &value, err
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}
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// IoctlPtpPinSetfunc updates configuration of the specified PTP
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// I/O pin.
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func IoctlPtpPinSetfunc(fd int, pd *PtpPinDesc) error {
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return ioctlPtr(fd, PTP_PIN_SETFUNC2, unsafe.Pointer(pd))
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}
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// IoctlPtpPeroutRequest configures the periodic output mode of the
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// PTP I/O pins.
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func IoctlPtpPeroutRequest(fd int, r *PtpPeroutRequest) error {
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return ioctlPtr(fd, PTP_PEROUT_REQUEST2, unsafe.Pointer(r))
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}
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// IoctlPtpExttsRequest configures the external timestamping mode
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// of the PTP I/O pins.
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func IoctlPtpExttsRequest(fd int, r *PtpExttsRequest) error {
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return ioctlPtr(fd, PTP_EXTTS_REQUEST2, unsafe.Pointer(r))
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}
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// IoctlGetWatchdogInfo fetches information about a watchdog device from the
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// Linux watchdog API. For more information, see:
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// https://www.kernel.org/doc/html/latest/watchdog/watchdog-api.html.
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@@ -194,3 +288,47 @@ func ioctlIfreqData(fd int, req uint, value *ifreqData) error {
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// identical so pass *IfreqData directly.
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return ioctlPtr(fd, req, unsafe.Pointer(value))
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}
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// IoctlKCMClone attaches a new file descriptor to a multiplexor by cloning an
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// existing KCM socket, returning a structure containing the file descriptor of
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// the new socket.
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func IoctlKCMClone(fd int) (*KCMClone, error) {
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var info KCMClone
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if err := ioctlPtr(fd, SIOCKCMCLONE, unsafe.Pointer(&info)); err != nil {
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return nil, err
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}
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return &info, nil
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}
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// IoctlKCMAttach attaches a TCP socket and associated BPF program file
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// descriptor to a multiplexor.
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func IoctlKCMAttach(fd int, info KCMAttach) error {
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return ioctlPtr(fd, SIOCKCMATTACH, unsafe.Pointer(&info))
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}
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// IoctlKCMUnattach unattaches a TCP socket file descriptor from a multiplexor.
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func IoctlKCMUnattach(fd int, info KCMUnattach) error {
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return ioctlPtr(fd, SIOCKCMUNATTACH, unsafe.Pointer(&info))
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}
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// IoctlLoopGetStatus64 gets the status of the loop device associated with the
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// file descriptor fd using the LOOP_GET_STATUS64 operation.
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func IoctlLoopGetStatus64(fd int) (*LoopInfo64, error) {
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var value LoopInfo64
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if err := ioctlPtr(fd, LOOP_GET_STATUS64, unsafe.Pointer(&value)); err != nil {
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return nil, err
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}
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return &value, nil
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}
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// IoctlLoopSetStatus64 sets the status of the loop device associated with the
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// file descriptor fd using the LOOP_SET_STATUS64 operation.
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func IoctlLoopSetStatus64(fd int, value *LoopInfo64) error {
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return ioctlPtr(fd, LOOP_SET_STATUS64, unsafe.Pointer(value))
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}
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// IoctlLoopConfigure configures all loop device parameters in a single step
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func IoctlLoopConfigure(fd int, value *LoopConfig) error {
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return ioctlPtr(fd, LOOP_CONFIGURE, unsafe.Pointer(value))
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}
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