Implement ARP broadcast and make ping work

This commit is contained in:
logicog
2025-06-23 17:57:54 +02:00
parent 2776df9ca8
commit b8352f9430
2 changed files with 176 additions and 7 deletions
+8
View File
@@ -48,6 +48,14 @@
#define RTL837X_REG_GPIO_CONF_A 0x50 #define RTL837X_REG_GPIO_CONF_A 0x50
// Configures IO direction for bank a // Configures IO direction for bank a
/*
* NIC Related registers
*/
#define RTL837X_REG_RX_AVAIL 0x7874
#define RTL837X_REG_RX_RINGPTR 0x787c
#define RTL837X_REG_RX_DONE 0x784c
#define REG_SET(r, v) SFR_DATA_24 = (v >> 24) & 0xff; \ #define REG_SET(r, v) SFR_DATA_24 = (v >> 24) & 0xff; \
SFR_DATA_16 = (v >> 16) & 0xff; \ SFR_DATA_16 = (v >> 16) & 0xff; \
SFR_DATA_8 = (v >> 8 & 0xff); \ SFR_DATA_8 = (v >> 8 & 0xff); \
+168 -7
View File
@@ -31,6 +31,10 @@
#define CLOCK_DIV 0 #define CLOCK_DIV 0
#endif #endif
__code uint8_t ownIP[] = { 192, 168, 2, 2 };
__code uint8_t ownMAC[] = { 0x1c, 0x2a, 0xa3, 0x23, 0x00, 0x02 };
__code uint8_t gatewayIP[] = { 192, 168, 2, 1};
__xdata uint8_t isRTL8373; __xdata uint8_t isRTL8373;
volatile __xdata uint32_t ticks; volatile __xdata uint32_t ticks;
@@ -50,8 +54,40 @@ __code uint8_t * __code greeting = "\r\nA minimal prompt to explore the RTL8372!
__code uint8_t * __code hex = "0123456789abcdef"; __code uint8_t * __code hex = "0123456789abcdef";
__xdata uint8_t flash_buf[256]; __xdata uint8_t flash_buf[256];
// For RX data, a propriatary RTL FRAME is inserted. Instead of 0x0800 for IPv4,
// the RTL_FRAME_TAG_ID is used as part of an 8-byte tag
#define RTL_TAG_SIZE 8
#define RTL_FRAME_TAG_ID 0x8899
// For RX and TX, an 8 byte header describing the frame to be moved to the Asic
// and received from the Asic is used
#define RTL_FRAME_HEADER_SIZE 8
// This is the standard size of n Ethernet frame header
#define ETHER_HEADER_SIZE 14
__xdata uint8_t rx_headers[32]; __xdata uint8_t rx_headers[32];
__xdata uint8_t rx_buf[1024]; __xdata uint8_t rx_buf[2048]; // FIXME: Currently no maximum packet size checked
__xdata uint8_t tx_buf[2048];
__xdata uint8_t tx_seq;
__xdata uint32_t ipv4_checksum; // Note that this is little endian
__xdata uint8_t was_offline;
__code uint8_t arp_broadcast[] = {
0x00, 0x07, 0x00, 0x00, 0x40, 0x00, 0x00, 0x00, // HEADER, BYTES 4/5: LEN FIXME
0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0x1c, 0x2a, 0xa3, 0x23, 0x00, 0x01, // BROADCAST-MAC, OWN MAC
0x08, 0x06, 0x00, 0x01, 0x08, 0x00, 0x06, 0x04, 0x00, 0x01,
0x1c, 0x2a, 0xa3, 0x23, 0x00, 0x01, // MAC ADRESS
0xc0, 0xa8, 0x02, 0x02, // IP ADDRESS
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, // Target MAC
0xc0, 0xa8, 0x02, 0x01, // Target IP
// Padding
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00
};
__code uint16_t bit_mask[16] = { __code uint16_t bit_mask[16] = {
0x0001, 0x0002, 0x0004,0x0008,0x0010,0x0020,0x0040, 0x0080, 0x0001, 0x0002, 0x0004,0x0008,0x0010,0x0020,0x0040, 0x0080,
@@ -339,7 +375,7 @@ void sfr_mask_data(uint8_t n, uint8_t mask, uint8_t set)
*/ */
void nic_rx_header(uint16_t ring_ptr) void nic_rx_header(uint16_t ring_ptr)
{ {
uint16_t buffer = (uint16_t) rx_headers, uint16_t buffer = (uint16_t) &rx_headers[0];
SFR_NIC_DATA_H = buffer >> 8; SFR_NIC_DATA_H = buffer >> 8;
SFR_NIC_DATA_L = buffer; SFR_NIC_DATA_L = buffer;
SFR_NIC_RING_L = ring_ptr; SFR_NIC_RING_L = ring_ptr;
@@ -370,6 +406,31 @@ void nic_rx_packet(uint16_t buffer, uint16_t ring_ptr)
do { } while (SFR_NIC_CTRL != 0); do { } while (SFR_NIC_CTRL != 0);
} }
void nic_tx_packet(uint16_t ring_ptr)
{
uint16_t buffer = (uint16_t) tx_buf;
print_string(", xmem: ");
print_short((uint16_t)buffer);
SFR_NIC_DATA_H = buffer >> 8;
SFR_NIC_DATA_L = buffer;
print_string("R"); print_short(buffer);
ring_ptr <<= 3;
ring_ptr |= 0x8000;
SFR_NIC_RING_L = ring_ptr;
SFR_NIC_RING_H = ring_ptr >> 8;
print_string(":"); print_short(ring_ptr);
uint16_t len =(((uint16_t)tx_buf[5]) << 8) | tx_buf[4];
len += 0xf;
len >>= 3;
print_string("-");
print_short(len);
print_string(" ");
SFR_NIC_CTRL = len;
do { } while (SFR_NIC_CTRL != 0);
}
/* Read flash using the MMIO capabilities of the DW8051 core /* Read flash using the MMIO capabilities of the DW8051 core
* Bank is < 0x3f and is the MSB * Bank is < 0x3f and is the MSB
* addr gives the address in the bank * addr gives the address in the bank
@@ -685,13 +746,60 @@ uint8_t sfp_read_reg(uint8_t reg)
} }
void prepare_arp(uint8_t broadcast)
{
for (uint8_t i = 0; i < arp_broadcast[4]; i++)
tx_buf[i] = arp_broadcast[i];
tx_buf[0] = tx_seq++;
for (uint8_t i = 0; i < 6; i++)
tx_buf[14 + i] = tx_buf[30 + i] = ownMAC[i];
for (uint8_t i = 0; i < 4; i++)
tx_buf[36 + i] = ownIP[i];
if (broadcast) {
for (uint8_t i = 0; i < 4; i++)
tx_buf[46 + i] = ownIP[i]; // An annoucement, using own IP. Will also need to ask for GW
} else {
for (uint8_t i = 0; i < 4; i++)
tx_buf[46 + i] = gatewayIP[i];
}
}
void prepare_icmp_reply(void)
{
for (uint8_t i = 0; i < arp_broadcast[4]; i++)
tx_buf[i] = arp_broadcast[i];
tx_buf[0] = tx_seq++;
for (uint8_t i = 0; i < 6; i++)
tx_buf[8 + i] = rx_buf[6 + i];
for (uint8_t i = 0; i < 6; i++)
tx_buf[14 + i] = ownMAC[i];
tx_buf[20] = 0x08; tx_buf[21] = 0; tx_buf[22] = 0x45; tx_buf[0x23] = 0x00;
tx_buf[28] = 0x40; tx_buf[29] = 0x00; // DONT FRAG, FRAG 0
tx_buf[26] = 0xef; tx_buf[27] = 0xdf; // ID
tx_buf[30] = 0x40; tx_buf[31] = 0x01; // TTL, ICMP
for (uint8_t i = 0; i < 4; i++)
tx_buf[34 + i] = ownIP[i];
// RTL Tag after dest-mac and source-mac: 8 Bytes
for (uint8_t i = 0; i < 4; i++)
tx_buf[26 + i] = rx_buf[26 + i];
for (uint8_t i = 0; i < 4; i++) // DEST-IP
tx_buf[38 + i] = rx_buf[34 + i];
tx_buf[4] = tx_buf[25] = 84; // TCP length
tx_buf[4] = 84 + ETHER_HEADER_SIZE; // Total Ethernet frame len
tx_buf[5] = tx_buf[24] = 0;
for (uint8_t i = 0; i < 60; i++) // Copy sequence number, id, timestamp and data over
tx_buf[RTL_FRAME_HEADER_SIZE + 38 + i] = rx_buf[RTL_TAG_SIZE + 38 + i];
}
void handle_rx(void) void handle_rx(void)
{ {
reg_read_m(0x7874); reg_read_m(RTL837X_REG_RX_AVAIL);
if (sfr_data[3] != 0) { if (sfr_data[2] != 0 || sfr_data[3] != 0) {
print_string("\r\nrx:"); print_string("\r\nrx:");
print_long_x(sfr_data); print_long_x(sfr_data);
reg_read_m(0x787c); reg_read_m(RTL837X_REG_RX_RINGPTR);
print_string(", "); print_string(", ");
print_long_x(sfr_data); print_long_x(sfr_data);
uint16_t ring_ptr = ((uint16_t)sfr_data[2]) << 8; uint16_t ring_ptr = ((uint16_t)sfr_data[2]) << 8;
@@ -700,6 +808,7 @@ void handle_rx(void)
print_string(", ring_ptr: "); print_string(", ring_ptr: ");
print_short(ring_ptr); print_short(ring_ptr);
nic_rx_header(ring_ptr); nic_rx_header(ring_ptr);
print_string(", on port "); print_byte(rx_headers[3] & 0xf);
__xdata uint8_t *ptr = rx_headers; __xdata uint8_t *ptr = rx_headers;
print_string(": "); print_string(": ");
for (uint8_t i = 0; i < 8; i++) { for (uint8_t i = 0; i < 8; i++) {
@@ -708,7 +817,7 @@ void handle_rx(void)
} }
nic_rx_packet((uint16_t) rx_buf, ring_ptr + 8); nic_rx_packet((uint16_t) rx_buf, ring_ptr + 8);
print_string("\r\n> "); print_string("\r\n<< ");
ptr = rx_buf; ptr = rx_buf;
for (uint8_t i = 0; i < 80; i++) { for (uint8_t i = 0; i < 80; i++) {
print_byte(*ptr++); print_byte(*ptr++);
@@ -717,11 +826,58 @@ void handle_rx(void)
sfr_data[0] = sfr_data[1] = sfr_data[2] = 0; sfr_data[0] = sfr_data[1] = sfr_data[2] = 0;
sfr_data[3] = 0x1; sfr_data[3] = 0x1;
reg_write_m(0x784c); reg_write_m(RTL837X_REG_RX_DONE);
// Test, wether we have to react to the packet in any way
if (was_offline) { // Need to send an ARP broadcast for our GW?
prepare_arp(1);
was_offline = 0;
} else if (rx_buf[0] == 0xff && rx_buf[1] == 0xff && rx_buf[2] == 0xff // Broadcast?
&& rx_buf[3] == 0xff && rx_buf[4] == 0xff && rx_buf[5] == 0xff) {
prepare_arp(0);
print_string("\r\nBROADCAST\r\n");
} else if (rx_buf[0] == ownMAC[0] && rx_buf[1] == ownMAC[1] && rx_buf[2] == ownMAC[2]
&& rx_buf[3] == ownMAC[3] && rx_buf[4] == ownMAC[4] && rx_buf[5] == ownMAC[5]) {
if (rx_buf[31] == 0x01) {
print_string("ICMP PING REQ\r\n");
prepare_icmp_reply();
} else {
return; // We only answer to ICMP PING requests
}
} else {
return;
}
print_string("\r\nDO TX. 0x7880: ");
reg_read_m(0x7880);
print_long_x(sfr_data);
reg_read_m(0x7890);
print_string(", 0x7890: ");
print_long_x(sfr_data);
ptr = tx_buf;
print_string("\r\n>> ");
for (uint8_t i = 0; i < 120; i++) {
print_byte(*ptr++);
write_char(' ');
}
print_string("\r\n> ");
ring_ptr = ((uint16_t)sfr_data[2]) << 8;
ring_ptr |= sfr_data[3];
nic_tx_packet(ring_ptr);
print_string("New Ring Pointer: ");
reg_read_m(0x7884);
print_long_x(sfr_data);
print_string(" (should be previous ptr, now)");
sfr_data[0] = sfr_data[1] = sfr_data[2] = 0;
sfr_data[3] = 0x1;
reg_write_m(0x7850); reg_write_m(0x7850);
} }
} }
// //
// An idle function that sleeps for 1 tick and does all the house-keeping // An idle function that sleeps for 1 tick and does all the house-keeping
// //
@@ -1046,8 +1202,12 @@ void nic_setup(void)
reg_write_m(0x6368); reg_write_m(0x6368);
print_string("\r\nA Reg 0x6368: "); print_string("\r\nA Reg 0x6368: ");
print_reg(0x6368); print_reg(0x6368);
// Sequence number of TX packets
tx_seq = 0;
} }
/* /*
* Configure the PHY-Side of the SDS-SDS link between SoC and PHY * Configure the PHY-Side of the SDS-SDS link between SoC and PHY
*/ */
@@ -1821,6 +1981,7 @@ void bootloader(void)
rtl8372_init(); rtl8372_init();
nic_setup(); nic_setup();
was_offline = 1;
setup_i2c(); setup_i2c();