Add memcpy function for __xdata

This commit is contained in:
logicog
2025-07-06 09:53:28 +02:00
parent 062c5576de
commit e0924314b4
2 changed files with 53 additions and 37 deletions
+1
View File
@@ -25,5 +25,6 @@ uint8_t sfp_read_reg(uint8_t reg);
void reg_bit_set(uint16_t reg_addr, char bit); void reg_bit_set(uint16_t reg_addr, char bit);
void reg_bit_clear(uint16_t reg_addr, char bit); void reg_bit_clear(uint16_t reg_addr, char bit);
void reset_chip(void); void reset_chip(void);
void memcpy(register __xdata uint8_t *dst, register __xdata uint8_t *src, register uint16_t len);
#endif #endif
+52 -37
View File
@@ -11,6 +11,7 @@
#include "rtl837x_phy.h" #include "rtl837x_phy.h"
#include "rtl837x_port.h" #include "rtl837x_port.h"
#include "cmd_parser.h" #include "cmd_parser.h"
#include "uip/uipopt.h"
#define SYS_TICK_HZ 100 #define SYS_TICK_HZ 100
#define SERIAL_BAUD_RATE 115200 #define SERIAL_BAUD_RATE 115200
@@ -53,7 +54,7 @@ __xdata char sbuf_ptr;
__xdata uint8_t sbuf[SBUF_SIZE]; __xdata uint8_t sbuf[SBUF_SIZE];
__xdata uint8_t sfr_data[4]; __xdata uint8_t sfr_data[4];
__code uint8_t * __code greeting = "\r\nA minimal prompt to explore the RTL8372:\r\n"; __code uint8_t * __code greeting = "\nA minimal prompt to explore the RTL8372:\n";
__code uint8_t * __code hex = "0123456789abcdef"; __code uint8_t * __code hex = "0123456789abcdef";
__xdata uint8_t flash_buf[256]; __xdata uint8_t flash_buf[256];
@@ -70,14 +71,14 @@ __xdata uint8_t flash_buf[256];
// and received from the Asic is used // and received from the Asic is used
#define RTL_FRAME_HEADER_SIZE 8 #define RTL_FRAME_HEADER_SIZE 8
// This is the standard size of n Ethernet frame header // This is the standard size of an Ethernet frame header
#define ETHER_HEADER_SIZE 14 #define ETHER_HEADER_SIZE 14
__xdata uint8_t rx_headers[32]; __xdata uint8_t rx_headers[32];
__xdata uint8_t rx_buf[2048]; // FIXME: Currently no maximum packet size checked __xdata uint8_t rx_buf[2048]; // FIXME: Currently no maximum packet size checked
__xdata uint8_t tx_buf[2048]; __xdata uint8_t tx_buf[2048];
__xdata uint8_t uip_buf[UIP_BUFSIZE+2];
__xdata uint8_t tx_seq; __xdata uint8_t tx_seq;
__xdata uint32_t ipv4_checksum; // Note that this is little endian
__xdata uint8_t minPort; __xdata uint8_t minPort;
__xdata uint8_t maxPort; __xdata uint8_t maxPort;
@@ -146,6 +147,12 @@ void write_char(char c)
do { do {
} while (TI == 0); } while (TI == 0);
TI = 0; TI = 0;
if (c =='\n') {
SBUF = '\r';
do {
} while (TI == 0);
TI = 0;
}
SBUF = c; SBUF = c;
} }
@@ -156,6 +163,14 @@ void print_string(__code char *p)
write_char(*p++); write_char(*p++);
} }
void memcpy(register __xdata uint8_t *dst, register __xdata uint8_t *src, register uint16_t len)
{
while (len--)
*dst++ = *src++;
}
void print_short(uint16_t a) void print_short(uint16_t a)
{ {
print_string("0x"); print_string("0x");
@@ -547,9 +562,9 @@ void sds_config_mac(uint8_t sds, uint8_t mode)
if (isRTL8373) // Set 3rd SERDES Mode to 0x2: if (isRTL8373) // Set 3rd SERDES Mode to 0x2:
sfr_data[2] |= 0x08; sfr_data[2] |= 0x08;
reg_write_m(RTL837X_REG_SDS_MODES); reg_write_m(RTL837X_REG_SDS_MODES);
print_string("\r\nRTL837X_REG_SDS_MODES: "); print_string("\nRTL837X_REG_SDS_MODES: ");
print_reg(RTL837X_REG_SDS_MODES); print_reg(RTL837X_REG_SDS_MODES);
print_string("\r\n"); print_string("\n");
} }
// Delay for given number of ticks without doing housekeeping // Delay for given number of ticks without doing housekeeping
@@ -637,9 +652,9 @@ void sds_config(uint8_t sds, uint8_t mode)
uint8_t page = 0; uint8_t page = 0;
uint16_t v = 0; uint16_t v = 0;
print_string("\r\nTrying to set SDS mode to 0x"); print_string("\nTrying to set SDS mode to 0x");
print_byte(mode); print_byte(mode);
print_string("\r\n"); print_string("\n");
switch (mode) { switch (mode) {
case SDS_SGMII: case SDS_SGMII:
@@ -657,7 +672,7 @@ void sds_config(uint8_t sds, uint8_t mode)
page = 0x2e; page = 0x2e;
break; break;
default: default:
print_string("Error in SDS Mode\r\n"); print_string("Error in SDS Mode\n");
return; return;
} }
sds_write_v(sds, 0x36, 0x10, v); // Q003610:0200 sds_write_v(sds, 0x36, 0x10, v); // Q003610:0200
@@ -771,7 +786,7 @@ void handle_rx(void)
reg_read_m(RTL837X_REG_RX_AVAIL); reg_read_m(RTL837X_REG_RX_AVAIL);
if (sfr_data[2] != 0 || sfr_data[3] != 0) { if (sfr_data[2] != 0 || sfr_data[3] != 0) {
#ifdef RXTXDBG #ifdef RXTXDBG
print_string("\r\nrx:"); print_string("\nrx:");
print_long_x(sfr_data); print_long_x(sfr_data);
#endif #endif
reg_read_m(RTL837X_REG_RX_RINGPTR); reg_read_m(RTL837X_REG_RX_RINGPTR);
@@ -799,7 +814,7 @@ void handle_rx(void)
nic_rx_packet((uint16_t) rx_buf, ring_ptr + 8); nic_rx_packet((uint16_t) rx_buf, ring_ptr + 8);
#ifdef RXTXDBG #ifdef RXTXDBG
print_string("\r\n<< "); print_string("\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++);
@@ -819,13 +834,13 @@ void handle_rx(void)
&& rx_buf[3] == 0xff && rx_buf[4] == 0xff && rx_buf[5] == 0xff) { && rx_buf[3] == 0xff && rx_buf[4] == 0xff && rx_buf[5] == 0xff) {
prepare_arp(0); prepare_arp(0);
#ifdef RXTXDBG #ifdef RXTXDBG
print_string("\r\nBROADCAST\r\n"); print_string("\nBROADCAST\n");
#endif #endif
} else if (rx_buf[0] == ownMAC[0] && rx_buf[1] == ownMAC[1] && rx_buf[2] == ownMAC[2] } 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]) { && rx_buf[3] == ownMAC[3] && rx_buf[4] == ownMAC[4] && rx_buf[5] == ownMAC[5]) {
if (rx_buf[23 + RTL_TAG_SIZE + VLAN_TAG_SIZE] == 0x01) { if (rx_buf[23 + RTL_TAG_SIZE + VLAN_TAG_SIZE] == 0x01) {
#ifdef RXTXDBG #ifdef RXTXDBG
print_string("ICMP PING REQ\r\n"); print_string("ICMP PING REQ\n");
#endif #endif
prepare_icmp_reply(); prepare_icmp_reply();
} else { } else {
@@ -837,7 +852,7 @@ void handle_rx(void)
#ifdef RXTXDBG #ifdef RXTXDBG
reg_read_m(0x7880); reg_read_m(0x7880);
print_string("\r\nDO TX. 0x7880: "); print_string("\nDO TX. 0x7880: ");
print_long_x(sfr_data); print_long_x(sfr_data);
#endif #endif
reg_read_m(0x7890); reg_read_m(0x7890);
@@ -845,12 +860,12 @@ void handle_rx(void)
#ifdef RXTXDBG #ifdef RXTXDBG
print_string(", 0x7890: "); print_string(", 0x7890: ");
print_long_x(sfr_data); print_long_x(sfr_data);
print_string("\r\n>> "); print_string("\n>> ");
for (uint8_t i = 0; i < 120; i++) { for (uint8_t i = 0; i < 120; i++) {
print_byte(*ptr++); print_byte(*ptr++);
write_char(' '); write_char(' ');
} }
print_string("\r\n> "); print_string("\n> ");
#endif #endif
ring_ptr = ((uint16_t)sfr_data[2]) << 8; ring_ptr = ((uint16_t)sfr_data[2]) << 8;
ring_ptr |= sfr_data[3]; ring_ptr |= sfr_data[3];
@@ -873,20 +888,20 @@ void handle_sfp(void)
reg_read_m(RTL837X_REG_GPIO_B); reg_read_m(RTL837X_REG_GPIO_B);
if ((sfp_pins_last & 0x1) && (!(sfr_data[0] & 0x40))) { if ((sfp_pins_last & 0x1) && (!(sfr_data[0] & 0x40))) {
sfp_pins_last &= ~0x01; sfp_pins_last &= ~0x01;
print_string("\r\n<MODULE INSERTED> "); print_string("\n<MODULE INSERTED> ");
// Read Reg 11: Encoding, see SFF-8472 and SFF-8024 // Read Reg 11: Encoding, see SFF-8472 and SFF-8024
// Read Reg 12: Signalling rate (including overhead) in 100Mbit: 0xd: 1Gbit, 0x67:10Gbit // Read Reg 12: Signalling rate (including overhead) in 100Mbit: 0xd: 1Gbit, 0x67:10Gbit
delay(100); // Delay, because some modules need time to wake up delay(100); // Delay, because some modules need time to wake up
uint8_t rate = sfp_read_reg(12); uint8_t rate = sfp_read_reg(12);
print_string("Rate: "); print_byte(rate); // Normally 1, but 0 for DAC, can be ignored? print_string("Rate: "); print_byte(rate); // Normally 1, but 0 for DAC, can be ignored?
print_string(" Encoding: "); print_byte(sfp_read_reg(11)); print_string(" Encoding: "); print_byte(sfp_read_reg(11));
print_string("\r\n"); print_string("\n");
for (uint8_t i = 20; i < 60; i++) { for (uint8_t i = 20; i < 60; i++) {
uint8_t c = sfp_read_reg(i); uint8_t c = sfp_read_reg(i);
if (c) if (c)
write_char(c); write_char(c);
} }
print_string("\r\n"); print_string("\n");
if (rate == 0xd) if (rate == 0xd)
sds_config(1, SDS_1000BX_FIBER); sds_config(1, SDS_1000BX_FIBER);
if (rate == 0x1f) // Ethernet 2.5 GBit if (rate == 0x1f) // Ethernet 2.5 GBit
@@ -897,17 +912,17 @@ void handle_sfp(void)
} }
if ((!(sfp_pins_last & 0x1)) && (sfr_data[0] & 0x40)) { if ((!(sfp_pins_last & 0x1)) && (sfr_data[0] & 0x40)) {
sfp_pins_last |= 0x01; sfp_pins_last |= 0x01;
print_string("\r\n<MODULE REMOVED>\r\n"); print_string("\n<MODULE REMOVED>\n");
} }
reg_read_m(RTL837X_REG_GPIO_C); reg_read_m(RTL837X_REG_GPIO_C);
if ((sfp_pins_last & 0x2) && (!(sfr_data[3] & 0x20))) { if ((sfp_pins_last & 0x2) && (!(sfr_data[3] & 0x20))) {
sfp_pins_last &= ~0x02; sfp_pins_last &= ~0x02;
print_string("\r\n<SFP-RX OK>\r\n"); print_string("\n<SFP-RX OK>\n");
} }
if ((!(sfp_pins_last & 0x2)) && (sfr_data[3] & 0x20)) { if ((!(sfp_pins_last & 0x2)) && (sfr_data[3] & 0x20)) {
sfp_pins_last |= 0x02; sfp_pins_last |= 0x02;
print_string("\r\n<SFP-RX LOS>\r\n"); print_string("\n<SFP-RX LOS>\n");
} }
} }
@@ -952,11 +967,11 @@ void idle(void)
reg_read_m(RTL837X_REG_LINKS); reg_read_m(RTL837X_REG_LINKS);
if (!isRTL8373 && cmp_4(sfr_data, linkbits_last)) { if (!isRTL8373 && cmp_4(sfr_data, linkbits_last)) {
print_string("\r\n<new link: "); print_string("\n<new link: ");
print_long_x(sfr_data); print_long_x(sfr_data);
print_string(", was "); print_string(", was ");
print_long_x(linkbits_last); print_long_x(linkbits_last);
print_string(">\r\n"); print_string(">\n");
uint8_t p5 = sfr_data[2] >> 4; uint8_t p5 = sfr_data[2] >> 4;
uint8_t p5_last = linkbits_last[2] >> 4; uint8_t p5_last = linkbits_last[2] >> 4;
cpy_4(linkbits_last, sfr_data); cpy_4(linkbits_last, sfr_data);
@@ -1324,11 +1339,11 @@ void led_config(void)
void rtl8372_init(void) void rtl8372_init(void)
{ {
// From run, set bits 0-1 to 1 // From run, set bits 0-1 to 1
print_string("\r\nrtl8372_init called\r\n"); print_string("\nrtl8372_init called\n");
/* reg_read_m(0x7f90); /* reg_read_m(0x7f90);
sfr_mask_data(0, 0, 3); sfr_mask_data(0, 0, 3);
reg_write_m(0x7f90); reg_write_m(0x7f90);
print_string("\r\nA Reg 0x7f90: "); print_string("\nA Reg 0x7f90: ");
print_reg(0x7f90); print_reg(0x7f90);
*/ */
@@ -1464,7 +1479,7 @@ void rtl8372_init(void)
handle_sfp(); handle_sfp();
print_string("\r\nrtl8372_init done\r\n"); print_string("\nrtl8372_init done\n");
} }
@@ -1537,18 +1552,18 @@ void bootloader(void)
// Set default for SFP pins so we can start up a module already inserted // Set default for SFP pins so we can start up a module already inserted
sfp_pins_last = 0x3; // signal LOS and no module inserted sfp_pins_last = 0x3; // signal LOS and no module inserted
print_string("\r\nDetecting CPU"); print_string("\nDetecting CPU");
isRTL8373 = 0; // FIXME: See below isRTL8373 = 0; // FIXME: See below
reg_read_m(0x4); reg_read_m(0x4);
if (sfr_data[1] == 0x73) { // Register was 0x83730000 if (sfr_data[1] == 0x73) { // Register was 0x83730000
print_string("\r\nRTL8373 detected"); print_string("\nRTL8373 detected");
isRTL8373 = 1; isRTL8373 = 1;
rtl8224_enable(); // Power on the RTL8224 rtl8224_enable(); // Power on the RTL8224
} }
#ifdef DEBUG #ifdef DEBUG
// Reset seconds counter // Reset seconds counter
print_string("\r\nTIMER-TEST: \r\n"); print_string("\nTIMER-TEST: \n");
REG_SET(RTL837X_REG_SEC_COUNTER, 0x0); REG_SET(RTL837X_REG_SEC_COUNTER, 0x0);
delay(100); delay(100);
print_reg(RTL837X_REG_SEC_COUNTER); write_char(' '); print_reg(RTL837X_REG_SEC_COUNTER); write_char(' ');
@@ -1562,8 +1577,8 @@ void bootloader(void)
print_reg(RTL837X_REG_SEC_COUNTER); print_reg(RTL837X_REG_SEC_COUNTER);
#endif #endif
print_string("\r\nStarting up...\r\n"); print_string("\nStarting up...\n");
print_string(" Flash controller\r\n"); print_string(" Flash controller\n");
flash_init(0); flash_init(0);
// Reset NIC // Reset NIC
@@ -1571,7 +1586,7 @@ void bootloader(void)
do { do {
reg_read(0x24); reg_read(0x24);
} while (SFR_DATA_0 & 0x4); } while (SFR_DATA_0 & 0x4);
print_string("\r\nNIC reset"); print_string("\nNIC reset");
rtl8372_init(); rtl8372_init();
REG_SET(0x7f94, 0x0); // BUG: Only for testing, otherwise: clear bits 0-3 REG_SET(0x7f94, 0x0); // BUG: Only for testing, otherwise: clear bits 0-3
@@ -1583,21 +1598,21 @@ void bootloader(void)
setup_i2c(); setup_i2c();
print_string(greeting); print_string(greeting);
print_string("\r\nCPU detected: "); print_string("\nCPU detected: ");
if (isRTL8373) if (isRTL8373)
print_string("RTL8373"); print_string("RTL8373");
else else
print_string("RTL8372"); print_string("RTL8372");
print_string("\r\nClock register: "); print_string("\nClock register: ");
print_reg(0x6040); print_reg(0x6040);
print_string("\r\nRegister 0x7b20/RTL837X_REG_SDS_MODES: "); print_string("\nRegister 0x7b20/RTL837X_REG_SDS_MODES: ");
print_reg(0x7b20); print_reg(0x7b20);
print_string("\r\nVerifying PHY settings:\n"); print_string("\nVerifying PHY settings:\n");
// p031f.a610:2058 p041f.a610:2058 p051f.a610:2058 r4f3c:00000000 p061f.a610:2058 p071f.a610:2058 // p031f.a610:2058 p041f.a610:2058 p051f.a610:2058 r4f3c:00000000 p061f.a610:2058 p071f.a610:2058
port_stats_print(); port_stats_print();
print_string("\r\n> "); print_string("\n> ");
cmd_parser_setup(); cmd_parser_setup();
while (1) { while (1) {
cmd_parser(); cmd_parser();