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Ethernet

Struct Ethernet 

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pub struct Ethernet<'d, T: Instance, P: Phy> { /* private fields */ }
Expand description

Ethernet driver.

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impl<'d, T: Instance, SMA: Instance> Ethernet<'d, T, GenericPhy<Sma<'d, SMA>>>

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pub fn new<const TX: usize, const RX: usize>( queue: &'d mut PacketQueue<TX, RX>, peri: Peri<'d, T>, irq: impl Binding<ETH, InterruptHandler> + 'd, ref_clk: Peri<'d, impl RefClkPin<T>>, crs: Peri<'d, impl CRSPin<T>>, rx_d0: Peri<'d, impl RXD0Pin<T>>, rx_d1: Peri<'d, impl RXD1Pin<T>>, tx_d0: Peri<'d, impl TXD0Pin<T>>, tx_d1: Peri<'d, impl TXD1Pin<T>>, tx_en: Peri<'d, impl TXEnPin<T>>, mac_addr: [u8; 6], sma: Peri<'d, SMA>, mdio: Peri<'d, impl MDIOPin<SMA>>, mdc: Peri<'d, impl MDCPin<SMA>>, ) -> Self

Create a new RMII ethernet driver using 7 pins.

This function uses a GenericPhy::new_auto as PHY, created using the provided SMA, and MDIO and MDC pins.

See Ethernet::new_with_phy for creating an RMII ethernet river with a non-standard PHY.

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pub fn new_mii<const TX: usize, const RX: usize>( queue: &'d mut PacketQueue<TX, RX>, peri: Peri<'d, T>, irq: impl Binding<ETH, InterruptHandler> + 'd, rx_clk: Peri<'d, impl RXClkPin<T>>, tx_clk: Peri<'d, impl TXClkPin<T>>, rxdv: Peri<'d, impl RXDVPin<T>>, rx_d0: Peri<'d, impl RXD0Pin<T>>, rx_d1: Peri<'d, impl RXD1Pin<T>>, rx_d2: Peri<'d, impl RXD2Pin<T>>, rx_d3: Peri<'d, impl RXD3Pin<T>>, tx_d0: Peri<'d, impl TXD0Pin<T>>, tx_d1: Peri<'d, impl TXD1Pin<T>>, tx_d2: Peri<'d, impl TXD2Pin<T>>, tx_d3: Peri<'d, impl TXD3Pin<T>>, tx_en: Peri<'d, impl TXEnPin<T>>, mac_addr: [u8; 6], sma: Peri<'d, SMA>, mdio: Peri<'d, impl MDIOPin<SMA>>, mdc: Peri<'d, impl MDCPin<SMA>>, ) -> Self

Create a new MII ethernet driver using 14 pins.

This function uses a GenericPhy::new_auto as PHY, created using the provided SMA, and MDIO and MDC pins.

See Ethernet::new_mii_with_phy for creating an RMII ethernet river with a non-standard PHY.

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impl<'d, T: Instance, P: Phy> Ethernet<'d, T, P>

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pub fn new_with_phy<const TX: usize, const RX: usize>( queue: &'d mut PacketQueue<TX, RX>, peri: Peri<'d, T>, irq: impl Binding<ETH, InterruptHandler> + 'd, ref_clk: Peri<'d, impl RefClkPin<T>>, crs: Peri<'d, impl CRSPin<T>>, rx_d0: Peri<'d, impl RXD0Pin<T>>, rx_d1: Peri<'d, impl RXD1Pin<T>>, tx_d0: Peri<'d, impl TXD0Pin<T>>, tx_d1: Peri<'d, impl TXD1Pin<T>>, tx_en: Peri<'d, impl TXEnPin<T>>, mac_addr: [u8; 6], phy: P, ) -> Self

Create a new RMII ethernet driver using 7 pins.

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pub fn new_mii_with_phy<const TX: usize, const RX: usize>( queue: &'d mut PacketQueue<TX, RX>, peri: Peri<'d, T>, irq: impl Binding<ETH, InterruptHandler> + 'd, rx_clk: Peri<'d, impl RXClkPin<T>>, tx_clk: Peri<'d, impl TXClkPin<T>>, rxdv: Peri<'d, impl RXDVPin<T>>, rx_d0: Peri<'d, impl RXD0Pin<T>>, rx_d1: Peri<'d, impl RXD1Pin<T>>, rx_d2: Peri<'d, impl RXD2Pin<T>>, rx_d3: Peri<'d, impl RXD3Pin<T>>, tx_d0: Peri<'d, impl TXD0Pin<T>>, tx_d1: Peri<'d, impl TXD1Pin<T>>, tx_d2: Peri<'d, impl TXD2Pin<T>>, tx_d3: Peri<'d, impl TXD3Pin<T>>, tx_en: Peri<'d, impl TXEnPin<T>>, mac_addr: [u8; 6], phy: P, ) -> Self

Create a new MII ethernet driver using 12 pins.

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impl<'d, T: Instance, P: Phy> Ethernet<'d, T, P>

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pub fn phy(&self) -> &P

Access the user-supplied Phy.

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pub fn phy_mut(&mut self) -> &mut P

Mutably access the user-supplied Phy.

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impl<'d, T: Instance, P: Phy> Driver for Ethernet<'d, T, P>

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type RxToken<'a> = RxToken<'a, 'd> where Self: 'a

A token to receive a single network packet.
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type TxToken<'a> = TxToken<'a, 'd> where Self: 'a

A token to transmit a single network packet.
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fn receive( &mut self, cx: &mut Context<'_>, ) -> Option<(Self::RxToken<'_>, Self::TxToken<'_>)>

Construct a token pair consisting of one receive token and one transmit token. Read more
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fn transmit(&mut self, cx: &mut Context<'_>) -> Option<Self::TxToken<'_>>

Construct a transmit token. Read more
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fn capabilities(&self) -> Capabilities

Get a description of device capabilities.
Get the link state. Read more
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fn hardware_address(&self) -> HardwareAddress

Get the device’s hardware address. Read more
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impl<'d, T: Instance, P: Phy> Drop for Ethernet<'d, T, P>

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fn drop(&mut self)

Executes the destructor for this type. Read more

Auto Trait Implementations§

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impl<'d, T, P> Freeze for Ethernet<'d, T, P>
where P: Freeze, T: Freeze,

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impl<'d, T, P> !RefUnwindSafe for Ethernet<'d, T, P>

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impl<'d, T, P> Send for Ethernet<'d, T, P>
where P: Send,

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impl<'d, T, P> !Sync for Ethernet<'d, T, P>

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impl<'d, T, P> Unpin for Ethernet<'d, T, P>
where P: Unpin, T: Unpin,

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impl<'d, T, P> !UnwindSafe for Ethernet<'d, T, P>

Blanket Implementations§

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impl<T> Any for T
where T: 'static + ?Sized,

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fn type_id(&self) -> TypeId

Gets the TypeId of self. Read more
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impl<T> Borrow<T> for T
where T: ?Sized,

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fn borrow(&self) -> &T

Immutably borrows from an owned value. Read more
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impl<T> BorrowMut<T> for T
where T: ?Sized,

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fn borrow_mut(&mut self) -> &mut T

Mutably borrows from an owned value. Read more
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impl<T> From<T> for T

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fn from(t: T) -> T

Returns the argument unchanged.

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impl<T, U> Into<U> for T
where U: From<T>,

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fn into(self) -> U

Calls U::from(self).

That is, this conversion is whatever the implementation of From<T> for U chooses to do.

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impl<T, U> TryFrom<U> for T
where U: Into<T>,

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type Error = Infallible

The type returned in the event of a conversion error.
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fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>

Performs the conversion.
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impl<T, U> TryInto<U> for T
where U: TryFrom<T>,

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type Error = <U as TryFrom<T>>::Error

The type returned in the event of a conversion error.
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fn try_into(self) -> Result<U, <U as TryFrom<T>>::Error>

Performs the conversion.