Fix controller & smoltcp device bugs
* lib.rs: fix transmission status checking (line 176) * lib.rs: make RAW_FRAME_LENGTH_MAX the same for both RX and TX, for the purpose of setting MAMXFL in controller, as well as setting MTU for smoltcp device * smoltcp_phy.rs: fix missing MTU definition
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15b08c780e
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11
src/lib.rs
11
src/lib.rs
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@ -15,6 +15,9 @@ pub mod tx;
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#[cfg(feature="smoltcp")]
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#[cfg(feature="smoltcp")]
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pub mod smoltcp_phy;
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pub mod smoltcp_phy;
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/// Max raw frame array size
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pub const RAW_FRAME_LENGTH_MAX: usize = 0x1000;
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pub trait EthController<'c> {
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pub trait EthController<'c> {
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fn init_dev(&mut self, delay: &mut dyn DelayUs<u16>) -> Result<(), EthControllerError>;
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fn init_dev(&mut self, delay: &mut dyn DelayUs<u16>) -> Result<(), EthControllerError>;
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fn init_rxbuf(&mut self) -> Result<(), EthControllerError>;
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fn init_rxbuf(&mut self) -> Result<(), EthControllerError>;
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@ -94,7 +97,7 @@ impl <'c, SPI: Transfer<u8>,
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// Set ERXTAIL pointer
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// Set ERXTAIL pointer
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self.spi_port.write_reg_16b(spi::addrs::ERXTAIL, self.rx_buf.get_tail_addr())?;
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self.spi_port.write_reg_16b(spi::addrs::ERXTAIL, self.rx_buf.get_tail_addr())?;
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// Set MAMXFL to maximum number of bytes in each accepted packet
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// Set MAMXFL to maximum number of bytes in each accepted packet
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self.spi_port.write_reg_16b(spi::addrs::MAMXFL, rx::RAW_FRAME_LENGTH_MAX as u16)?;
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self.spi_port.write_reg_16b(spi::addrs::MAMXFL, RAW_FRAME_LENGTH_MAX as u16)?;
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// Enable RXEN (ECON1<0>)
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// Enable RXEN (ECON1<0>)
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let econ1 = self.spi_port.read_reg_16b(spi::addrs::ECON1)?;
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let econ1 = self.spi_port.read_reg_16b(spi::addrs::ECON1)?;
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self.spi_port.write_reg_16b(spi::addrs::ECON1, 0x1 | (econ1 & 0xfffe))?;
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self.spi_port.write_reg_16b(spi::addrs::ECON1, 0x1 | (econ1 & 0xfffe))?;
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@ -135,7 +138,7 @@ impl <'c, SPI: Transfer<u8>,
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rx_packet.write_to_rsv(&rsv_buf[1..]);
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rx_packet.write_to_rsv(&rsv_buf[1..]);
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rx_packet.update_frame_length();
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rx_packet.update_frame_length();
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// Read frame bytes
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// Read frame bytes
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let mut frame_buf = [0; rx::RAW_FRAME_LENGTH_MAX];
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let mut frame_buf = [0; RAW_FRAME_LENGTH_MAX];
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self.spi_port.read_rxdat(&mut frame_buf, rx_packet.get_frame_length())?;
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self.spi_port.read_rxdat(&mut frame_buf, rx_packet.get_frame_length())?;
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rx_packet.copy_frame_from(&frame_buf[1..]);
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rx_packet.copy_frame_from(&frame_buf[1..]);
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// Set ERXTAIL pointer to (next_addr - 2)
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// Set ERXTAIL pointer to (next_addr - 2)
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@ -157,7 +160,7 @@ impl <'c, SPI: Transfer<u8>,
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self.spi_port.write_reg_16b(spi::addrs::EGPWRPT, self.tx_buf.get_next_addr())?;
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self.spi_port.write_reg_16b(spi::addrs::EGPWRPT, self.tx_buf.get_next_addr())?;
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// Copy packet data to SRAM Buffer
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// Copy packet data to SRAM Buffer
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// 1-byte Opcode is included
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// 1-byte Opcode is included
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let mut txdat_buf: [u8; tx::RAW_FRAME_LENGTH_MAX + 1] = [0; tx::RAW_FRAME_LENGTH_MAX + 1];
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let mut txdat_buf: [u8; RAW_FRAME_LENGTH_MAX + 1] = [0; RAW_FRAME_LENGTH_MAX + 1];
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packet.write_frame_to(&mut txdat_buf[1..]);
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packet.write_frame_to(&mut txdat_buf[1..]);
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self.spi_port.write_txdat(&mut txdat_buf, packet.get_frame_length())?;
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self.spi_port.write_txdat(&mut txdat_buf, packet.get_frame_length())?;
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// Set ETXST to packet start address
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// Set ETXST to packet start address
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@ -170,7 +173,7 @@ impl <'c, SPI: Transfer<u8>,
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// Poll TXRTS (ECON1<1>) to check if it is reset
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// Poll TXRTS (ECON1<1>) to check if it is reset
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loop {
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loop {
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econ1_lo = self.spi_port.read_reg_8b(spi::addrs::ECON1)?;
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econ1_lo = self.spi_port.read_reg_8b(spi::addrs::ECON1)?;
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if econ1_lo & 0x02 == 0x02 { break }
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if econ1_lo & 0x02 == 0 { break }
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}
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}
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// TODO: Read ETXSTAT to understand Ethernet transmission status
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// TODO: Read ETXSTAT to understand Ethernet transmission status
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// (See: Register 9-2, ENC424J600 Data Sheet)
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// (See: Register 9-2, ENC424J600 Data Sheet)
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@ -1,10 +1,10 @@
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use crate::RAW_FRAME_LENGTH_MAX;
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/// SRAM Addresses
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/// SRAM Addresses
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pub const ERXST_DEFAULT: u16 = 0x5340;
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pub const ERXST_DEFAULT: u16 = 0x5340;
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pub const ERXTAIL_DEFAULT: u16 = 0x5ffe;
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pub const ERXTAIL_DEFAULT: u16 = 0x5ffe;
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pub const RX_MAX_ADDRESS: u16 = 0x5fff;
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pub const RX_MAX_ADDRESS: u16 = 0x5fff;
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/// Max raw frame array size
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pub const RAW_FRAME_LENGTH_MAX: usize = 0x1000;
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/// Receive Status Vector Length
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/// Receive Status Vector Length
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pub const RSV_LENGTH: usize = 6;
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pub const RSV_LENGTH: usize = 6;
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@ -1,5 +1,5 @@
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use crate::{
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use crate::{
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EthController, rx, tx
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EthController, tx, RAW_FRAME_LENGTH_MAX
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};
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};
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use core::intrinsics::transmute;
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use core::intrinsics::transmute;
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use smoltcp::{
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use smoltcp::{
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@ -10,16 +10,16 @@ use smoltcp::{
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pub struct SmoltcpDevice<'c> {
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pub struct SmoltcpDevice<'c> {
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eth_controller: &'c mut dyn EthController<'c>,
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eth_controller: &'c mut dyn EthController<'c>,
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rx_packet_buf: [u8; rx::RAW_FRAME_LENGTH_MAX],
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rx_packet_buf: [u8; RAW_FRAME_LENGTH_MAX],
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tx_packet_buf: [u8; tx::RAW_FRAME_LENGTH_MAX]
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tx_packet_buf: [u8; RAW_FRAME_LENGTH_MAX]
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}
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}
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impl<'c> SmoltcpDevice<'c> {
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impl<'c> SmoltcpDevice<'c> {
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pub fn new(eth_controller: &'c mut dyn EthController<'c>) -> Self {
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pub fn new(eth_controller: &'c mut dyn EthController<'c>) -> Self {
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SmoltcpDevice {
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SmoltcpDevice {
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eth_controller,
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eth_controller,
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rx_packet_buf: [0; rx::RAW_FRAME_LENGTH_MAX],
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rx_packet_buf: [0; RAW_FRAME_LENGTH_MAX],
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tx_packet_buf: [0; tx::RAW_FRAME_LENGTH_MAX]
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tx_packet_buf: [0; RAW_FRAME_LENGTH_MAX]
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}
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}
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}
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}
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}
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}
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@ -29,7 +29,9 @@ impl<'a, 'c> Device<'a> for SmoltcpDevice<'c> {
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type TxToken = EthTxToken<'a>;
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type TxToken = EthTxToken<'a>;
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fn capabilities(&self) -> DeviceCapabilities {
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fn capabilities(&self) -> DeviceCapabilities {
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DeviceCapabilities::default()
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let mut caps = DeviceCapabilities::default();
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caps.max_transmission_unit = RAW_FRAME_LENGTH_MAX;
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caps
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}
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}
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fn receive(&'a mut self) -> Option<(Self::RxToken, Self::TxToken)> {
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fn receive(&'a mut self) -> Option<(Self::RxToken, Self::TxToken)> {
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@ -1,10 +1,9 @@
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use crate::RAW_FRAME_LENGTH_MAX;
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/// SRAM Addresses
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/// SRAM Addresses
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pub const GPBUFST_DEFAULT: u16 = 0x0000; // Start of General-Purpose SRAM Buffer
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pub const GPBUFST_DEFAULT: u16 = 0x0000; // Start of General-Purpose SRAM Buffer
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pub const GPBUFEN_DEFAULT: u16 = 0x5340; // End of General-Purpose SRAM Buffer == ERXST default
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pub const GPBUFEN_DEFAULT: u16 = 0x5340; // End of General-Purpose SRAM Buffer == ERXST default
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/// Max raw frame array size
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pub const RAW_FRAME_LENGTH_MAX: usize = 0x1000;
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/// Struct for TX Buffer on the hardware
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/// Struct for TX Buffer on the hardware
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/// TODO: Should be a singleton
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/// TODO: Should be a singleton
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pub struct TxBuffer {
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pub struct TxBuffer {
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