update netlink dependencies
Signed-off-by: Antonio Ojea <aojea@redhat.com>
This commit is contained in:
56
vendor/github.com/vishvananda/netlink/class.go
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vendored
56
vendor/github.com/vishvananda/netlink/class.go
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vendored
@ -132,7 +132,10 @@ func (class *GenericClass) Type() string {
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return class.ClassType
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}
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// ServiceCurve is the way the HFSC curve are represented
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// ServiceCurve is a nondecreasing function of some time unit, returning the amount of service
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// (an allowed or allocated amount of bandwidth) at some specific point in time. The purpose of it
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// should be subconsciously obvious: if a class was allowed to transfer not less than the amount
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// specified by its service curve, then the service curve is not violated.
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type ServiceCurve struct {
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m1 uint32
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d uint32
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@ -144,6 +147,21 @@ func (c *ServiceCurve) Attrs() (uint32, uint32, uint32) {
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return c.m1, c.d, c.m2
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}
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// Burst returns the burst rate (m1) of the curve
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func (c *ServiceCurve) Burst() uint32 {
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return c.m1
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}
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// Delay return the delay (d) of the curve
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func (c *ServiceCurve) Delay() uint32 {
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return c.d
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}
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// Rate returns the rate (m2) of the curve
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func (c *ServiceCurve) Rate() uint32 {
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return c.m2
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}
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// HfscClass is a representation of the HFSC class
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type HfscClass struct {
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ClassAttrs
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@ -152,35 +170,44 @@ type HfscClass struct {
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Usc ServiceCurve
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}
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// SetUsc sets the Usc curve
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// SetUsc sets the USC curve. The bandwidth (m1 and m2) is specified in bits and the delay in
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// seconds.
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func (hfsc *HfscClass) SetUsc(m1 uint32, d uint32, m2 uint32) {
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hfsc.Usc = ServiceCurve{m1: m1 / 8, d: d, m2: m2 / 8}
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hfsc.Usc = ServiceCurve{m1: m1, d: d, m2: m2}
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}
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// SetFsc sets the Fsc curve
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// SetFsc sets the Fsc curve. The bandwidth (m1 and m2) is specified in bits and the delay in
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// seconds.
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func (hfsc *HfscClass) SetFsc(m1 uint32, d uint32, m2 uint32) {
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hfsc.Fsc = ServiceCurve{m1: m1 / 8, d: d, m2: m2 / 8}
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hfsc.Fsc = ServiceCurve{m1: m1, d: d, m2: m2}
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}
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// SetRsc sets the Rsc curve
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// SetRsc sets the Rsc curve. The bandwidth (m1 and m2) is specified in bits and the delay in
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// seconds.
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func (hfsc *HfscClass) SetRsc(m1 uint32, d uint32, m2 uint32) {
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hfsc.Rsc = ServiceCurve{m1: m1 / 8, d: d, m2: m2 / 8}
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hfsc.Rsc = ServiceCurve{m1: m1, d: d, m2: m2}
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}
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// SetSC implements the SC from the tc CLI
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// SetSC implements the SC from the `tc` CLI. This function behaves the same as if one would set the
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// USC through the `tc` command-line tool. This means bandwidth (m1 and m2) is specified in bits and
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// the delay in ms.
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func (hfsc *HfscClass) SetSC(m1 uint32, d uint32, m2 uint32) {
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hfsc.Rsc = ServiceCurve{m1: m1 / 8, d: d, m2: m2 / 8}
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hfsc.Fsc = ServiceCurve{m1: m1 / 8, d: d, m2: m2 / 8}
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hfsc.SetRsc(m1, d, m2)
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hfsc.SetFsc(m1, d, m2)
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}
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// SetUL implements the UL from the tc CLI
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// SetUL implements the UL from the `tc` CLI. This function behaves the same as if one would set the
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// USC through the `tc` command-line tool. This means bandwidth (m1 and m2) is specified in bits and
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// the delay in ms.
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func (hfsc *HfscClass) SetUL(m1 uint32, d uint32, m2 uint32) {
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hfsc.Usc = ServiceCurve{m1: m1 / 8, d: d, m2: m2 / 8}
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hfsc.SetUsc(m1, d, m2)
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}
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// SetLS implements the LS from the tc CLI
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// SetLS implements the LS from the `tc` CLI. This function behaves the same as if one would set the
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// USC through the `tc` command-line tool. This means bandwidth (m1 and m2) is specified in bits and
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// the delay in ms.
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func (hfsc *HfscClass) SetLS(m1 uint32, d uint32, m2 uint32) {
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hfsc.Fsc = ServiceCurve{m1: m1 / 8, d: d, m2: m2 / 8}
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hfsc.SetFsc(m1, d, m2)
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}
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// NewHfscClass returns a new HFSC struct with the set parameters
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@ -193,6 +220,7 @@ func NewHfscClass(attrs ClassAttrs) *HfscClass {
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}
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}
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// String() returns a string that contains the information and attributes of the HFSC class
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func (hfsc *HfscClass) String() string {
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return fmt.Sprintf(
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"{%s -- {RSC: {m1=%d d=%d m2=%d}} {FSC: {m1=%d d=%d m2=%d}} {USC: {m1=%d d=%d m2=%d}}}",
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