mirror of
https://github.com/logicog/RTLPlayground.git
synced 2026-08-30 14:52:51 +08:00
460 lines
12 KiB
C
460 lines
12 KiB
C
// #define REGDBG 1
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#include "../rtl837x_sfr.h"
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#include "../rtl837x_common.h"
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#include "../rtl837x_regs.h"
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#include "../rtl837x_port.h"
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#include "../rtl837x_flash.h"
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#include "uip.h"
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#include "../html_data.h"
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#include <stdint.h>
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#include "../phy.h"
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#include "../version.h"
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#include "page_impl.h"
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#pragma codeseg BANK1
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#pragma constseg BANK1
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extern __xdata uint8_t outbuf[TCP_OUTBUF_SIZE];
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extern __xdata uint16_t slen;
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extern __xdata uint16_t cont_len;
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extern __xdata uint32_t cont_addr;
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extern __code uint8_t * __code hex;
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extern __xdata uip_ipaddr_t uip_hostaddr, uip_draddr, uip_netmask;
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extern __code struct uip_eth_addr uip_ethaddr;
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extern __code uint8_t log_to_phys_port[9];
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extern __code uint8_t phys_to_log_port[6];
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extern __xdata uint8_t minPort;
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extern __xdata uint8_t maxPort;
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extern __xdata uint8_t nSFPPorts;
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extern __xdata uint8_t sfr_data[4];
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extern __xdata uint8_t cpuPort;
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extern __xdata uint8_t isRTL8373;
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extern __xdata uint8_t sfp_pins_last;
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extern __xdata uint8_t vlan_names[VLAN_NAMES_SIZE];
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extern __xdata uint8_t cmd_history[CMD_HISTORY_SIZE];
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extern __xdata uint16_t cmd_history_ptr;
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extern __xdata struct flash_region_t flash_region;
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__code uint8_t * __code HTTP_RESPONCE_JSON = "HTTP/1.1 200 OK\r\nContent-Type: application/json\r\n\r\n";
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__code uint8_t * __code HTTP_RESPONCE_TXT = "HTTP/1.1 200 OK\r\nContent-Type: text/plain\r\n\r\n";
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// Convert uint8_t to ascii HEX char push on html-buffer.
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void charhex_to_html(char c)
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{
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outbuf[slen++] = itohex(c);
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}
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// Convert (uint8_t) bool to ascii '0' or '1' char push on html-buffer.
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void bool_to_html(char c)
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{
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outbuf[slen++] = c ? '1' : '0';
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}
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void char_to_html(char c)
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{
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outbuf[slen++] = c;
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}
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// Convert uint8_t to ascii HEX char.
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void byte_to_html(uint8_t val)
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{
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uint8_t cnt = 2;
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do {
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val = (val >> 4) | (val << 4);
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charhex_to_html(val);
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cnt -= 1;
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} while(cnt);
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}
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/* Converts a uint8_t to raw string.
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Suppress leading zeros.
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*/
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void itoa_html(uint8_t v)
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{
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uint8_t t = (v / 100);
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// when print_zeros is not zero, we know that a non-zero number has printed.
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// That have to print all the next numbers.
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uint8_t print_zeros = t;
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if (print_zeros)
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char_to_html('0' + t);
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t = (v / 10) % 10;
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print_zeros |= t;
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if (print_zeros)
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char_to_html('0' + t);
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char_to_html('0' + (v % 10));
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}
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uint16_t stat_content(void)
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{
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print_string("stat_content called\n");
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return 0;
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}
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uint16_t port_status(void)
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{
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print_string("port_status called\n");
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return 0;
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}
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/* Converts sfr_data[] into raw hex string.
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Suppress leading zeros.
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*/
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void sfr_data_to_html(void)
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{
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uint8_t print_zeros = 0;
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uint8_t val = 0;
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for (uint8_t nibble = 0; nibble < 8; nibble++) {
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if (!(nibble & 1))
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val = sfr_data[nibble>>1];
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// force the swap instruction, itohex() ignores the upper nibble.
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val = (val << 4) | (val >> 4);
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// when print_zeros is not zero, we know that a non-zero number has printed.
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// That have to print all the next numbers.
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print_zeros |= val;
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// only care about lower nibble, that is what is printed.
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print_zeros &= 0x0f;
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if (print_zeros)
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charhex_to_html(val);
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}
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if (print_zeros == 0) {
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char_to_html('0');
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}
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}
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void reg_to_html(register uint16_t reg)
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{
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reg_read_m(reg);
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sfr_data_to_html();
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}
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void send_sfp_info(uint8_t sfp)
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{
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// This loops over the Vendor-name, Vendor OUI, Vendor PN and Vendor rev ASCII fields
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for (uint8_t i = 20; i < 60; i++) {
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if (i >= 36 && i < 40) // Skip Non-ASCII codes
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continue;
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uint8_t c = sfp_read_reg(sfp, i);
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if (c && c != 0xa0) // a0 is the byte read from a non-existant I2C EEPROM
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char_to_html(c);
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}
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}
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void send_basic_info(void)
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{
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slen = strtox(outbuf, HTTP_RESPONCE_JSON);
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print_string("send_basic_info called\n");
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slen += strtox(outbuf + slen, "{\"ip_address\":\"");
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itoa_html(uip_hostaddr[0]); char_to_html('.');
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itoa_html(uip_hostaddr[0] >> 8); char_to_html('.');
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itoa_html(uip_hostaddr[1]); char_to_html('.');
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itoa_html(uip_hostaddr[1] >> 8);
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slen += strtox(outbuf + slen, "\",\"ip_gateway\":\"");
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itoa_html(uip_draddr[0]); char_to_html('.');
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itoa_html(uip_draddr[0] >> 8); char_to_html('.');
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itoa_html(uip_draddr[1]); char_to_html('.');
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itoa_html(uip_draddr[1] >> 8);
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slen += strtox(outbuf + slen, "\",\"ip_netmask\":\"");
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itoa_html(uip_netmask[0]); char_to_html('.');
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itoa_html(uip_netmask[0] >> 8); char_to_html('.');
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itoa_html(uip_netmask[1]); char_to_html('.');
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itoa_html(uip_netmask[1] >> 8);
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slen += strtox(outbuf + slen, "\",\"mac_address\":\"");
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byte_to_html(uip_ethaddr.addr[0]); char_to_html(':');
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byte_to_html(uip_ethaddr.addr[1]); char_to_html(':');
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byte_to_html(uip_ethaddr.addr[2]); char_to_html(':');
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byte_to_html(uip_ethaddr.addr[3]); char_to_html(':');
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byte_to_html(uip_ethaddr.addr[4]); char_to_html(':');
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byte_to_html(uip_ethaddr.addr[5]);
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slen += strtox(outbuf + slen, "\",\"sw_ver\":\"");
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slen += strtox(outbuf + slen, VERSION_SW);
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slen += strtox(outbuf + slen, "\",\"hw_ver\":\"SWGT024-V2.0\"");
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slen += strtox(outbuf + slen, ",\"sfp_slot_0\":\"");
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send_sfp_info(0);
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char_to_html('"');
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#if NSFP == 2
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slen += strtox(outbuf + slen, ",\"sfp_slot_1\":\"");
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send_sfp_info(1);
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char_to_html('"');
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#endif
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char_to_html('}');
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}
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void send_vlan(uint16_t vlan)
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{
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slen = strtox(outbuf, HTTP_RESPONCE_JSON);
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print_string("sending VLAN\n");
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//{"members":"0x00060011"}
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slen += strtox(outbuf + slen, "{\"members\":\"0x");
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vlan_get(vlan);
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sfr_data_to_html();
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slen += strtox(outbuf + slen, "\",\"name\":\"");
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__xdata uint16_t n = vlan_name(vlan);
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if (n== 0xffff) {
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print_string("VLAN has no name\n");
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} else {
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while(vlan_names[n] && vlan_names[n] != ' ')
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char_to_html(vlan_names[n++]);
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}
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slen += strtox(outbuf + slen, "\"}");
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}
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void send_counters(char port)
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{
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print_string("send_counters called: "); print_byte(port); write_char('\n');
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slen = strtox(outbuf, HTTP_RESPONCE_JSON);
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print_string("sending counters\n");
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port--;
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uint8_t i = isRTL8373 ? port - 1: phys_to_log_port[port];
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slen += strtox(outbuf + slen, "{\"portNum\":");
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itoa_html(i + 1);
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for (uint8_t j = 0; j < 0x3f; j++) {
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STAT_GET(j, i);
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slen += strtox(outbuf + slen, ",\"cnt_");
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itoa_html(j);
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slen += strtox(outbuf + slen, "\":\"0x");
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reg_to_html(RTL837X_STAT_V_HIGH);
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reg_to_html(RTL837X_STAT_V_LOW);
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char_to_html('\"');
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}
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char_to_html('}');
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}
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void send_mirror(void)
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{
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print_string("send_mirror called\n");
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slen = strtox(outbuf, HTTP_RESPONCE_JSON);
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reg_read_m(RTL837x_MIRROR_CTRL);
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uint8_t mPort = sfr_data[3];
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if (mPort & 1) {
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slen += strtox(outbuf + slen, "{\"enabled\":1,\"mPort\":");
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} else {
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slen += strtox(outbuf + slen, "{\"enabled\":0,\"mPort\":");
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}
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if (!isRTL8373)
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itoa_html(log_to_phys_port[mPort >> 1]);
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else
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itoa_html((mPort >> 1) + 1);
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reg_read_m(RTL837x_MIRROR_CONF);
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uint16_t m = sfr_data[0];
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m = (m << 8) | sfr_data[1];
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slen += strtox(outbuf + slen, ",\"mirror_rx\":\"");
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for (uint8_t i = 0; i < 16; i++) {
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bool_to_html(!!(m & 0x8000));
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m <<= 1;
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}
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m = sfr_data[2];
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m = (m << 8) | sfr_data[3];
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slen += strtox(outbuf + slen, "\",\"mirror_tx\":\"");
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for (uint8_t i = 0; i < 16; i++) {
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bool_to_html(!!(m & 0x8000));
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m <<= 1;
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}
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char_to_html('\"');
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char_to_html('}');
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}
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void send_lag(void)
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{
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print_string("send_lag called\n");
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slen = strtox(outbuf, HTTP_RESPONCE_JSON);
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char_to_html('[');
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for (uint8_t l=0; l < 4; l++) {
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slen += strtox(outbuf + slen, "{\"lagNum\":");
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itoa_html(l);
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slen += strtox(outbuf + slen, ",\"members\":\"");
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reg_read_m(RTL837X_TRK_MBR_CTRL_BASE + (l << 2));
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uint16_t ports = ((uint16_t)sfr_data[2] << 8) | sfr_data[3];
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for (uint8_t i = 0; i < 16; i++) {
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bool_to_html(!!(ports & 0x8000));
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ports <<= 1;
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}
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slen += strtox(outbuf + slen, "\",\"hash\":\"");
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reg_read_m(RTL837X_TRK_HASH_CTRL_BASE + (l << 2));
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sfr_data_to_html();
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slen += strtox(outbuf + slen, "\"},");
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}
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slen -=1; // remove comma
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char_to_html(']');
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}
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void send_eee(void)
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{
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print_string("send_eee called\nsending EEE status\n");
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slen = strtox(outbuf, HTTP_RESPONCE_JSON);
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reg_read_m(RTL8373_PHY_EEE_ABLTY);
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uint8_t eee_ablty = sfr_data[3];
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char_to_html('[');
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for (uint8_t i = minPort; i <= maxPort; i++) {
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slen += strtox(outbuf + slen, "{\"portNum\":");
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if (!isRTL8373)
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itoa_html(log_to_phys_port[i]);
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else
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itoa_html(i + 1);
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if (IS_SFP(i)) {
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slen += strtox(outbuf + slen, ",\"isSFP\":1");
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} else {
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slen += strtox(outbuf + slen, ",\"isSFP\":0,\"eee\":\"");
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uint16_t v;
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phy_read(i, PHY_MMD_AN, PHY_EEE_ADV2);
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v = SFR_DATA_U16;
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bool_to_html(v & PHY_EEE_BIT_2G5);
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phy_read(i, PHY_MMD_AN, PHY_EEE_ADV);
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v = SFR_DATA_U16;
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bool_to_html(v & PHY_EEE_BIT_1G);
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bool_to_html(v & PHY_EEE_BIT_100M);
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phy_read(i, PHY_MMD_AN, PHY_EEE_LP_ABILITY2);
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v = SFR_DATA_U16;
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slen += strtox(outbuf + slen, "\",\"eee_lp\":\"");
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bool_to_html (v & PHY_EEE_BIT_2G5);
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phy_read(i, PHY_MMD_AN, PHY_EEE_LP_ABILITY);
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v = SFR_DATA_U16;
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bool_to_html(v & PHY_EEE_BIT_1G);
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bool_to_html(v & PHY_EEE_BIT_100M);
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slen += strtox(outbuf + slen, "\",\"active\":");
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bool_to_html(eee_ablty & (1 << i));
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}
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char_to_html('}');
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if (i < maxPort)
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char_to_html(',');
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else
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char_to_html(']');
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}
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}
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void send_status(void)
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{
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slen = strtox(outbuf, HTTP_RESPONCE_JSON);
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print_string("sending status\n");
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char_to_html('[');
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for (uint8_t i = minPort; i <= maxPort; i++) {
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slen += strtox(outbuf + slen, "{\"portNum\":");
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if (!isRTL8373)
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itoa_html(log_to_phys_port[i]);
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else
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itoa_html(i + 1);
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if (IS_SFP(i)) {
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slen += strtox(outbuf + slen, ",\"isSFP\":1,\"enabled\":");
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if (i != 3) {
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reg_read_m(RTL837X_REG_GPIO_00_31_INPUT);
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bool_to_html(!(sfr_data[0] & 0x40));
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} else {
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reg_read_m(RTL837X_REG_GPIO_32_63_INPUT);
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bool_to_html(!(sfr_data[1] & 0x04));
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}
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} else {
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slen += strtox(outbuf + slen, ",\"isSFP\":0,\"enabled\":");
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phy_read(i, 0x1f, 0xa610);
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bool_to_html(SFR_DATA_8 == 0x20);
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}
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slen += strtox(outbuf + slen, ",\"link\":");
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if (i < 8)
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reg_read_m(RTL837X_REG_LINKS);
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else
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reg_read_m(RTL837X_REG_LINKS_89);
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uint8_t b = sfr_data[3 - ((i & 7) >> 1)];
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b = (i & 1) ? b >> 4 : b & 0xf;
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char_to_html('0' + b);
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STAT_GET(STAT_COUNTER_TX_PKTS, i);
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slen += strtox(outbuf + slen, ",\"txG\":\"0x");
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reg_to_html(RTL837X_STAT_V_HIGH);
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reg_to_html(RTL837X_STAT_V_LOW);
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slen += strtox(outbuf + slen, "\",\"txB\":\"0x");
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STAT_GET(STAT_COUNTER_ERR_PKTS, i);
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reg_to_html(RTL837X_STAT_V_LOW); // 32 bit Tx Packet errors
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slen += strtox(outbuf + slen, "\",\"rxG\":\"0x");
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STAT_GET(STAT_COUNTER_RX_PKTS, i);
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reg_to_html(RTL837X_STAT_V_HIGH);
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reg_to_html(RTL837X_STAT_V_LOW);
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slen += strtox(outbuf + slen, "\",\"rxB\":\"0x");
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STAT_GET(STAT_COUNTER_ERR_PKTS, i);
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reg_to_html(RTL837X_STAT_V_HIGH); // 32bit RX packet errors
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slen += strtox(outbuf + slen, "\"}");
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if (i < maxPort)
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char_to_html(',');
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else
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char_to_html(']');
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}
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}
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void send_config(void)
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{
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print_string("send_config called\n");
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__xdata uint32_t pos = CONFIG_START; // 70000 , 6c000 / 0xc000 = 9
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extern __xdata uint16_t len_left = CONFIG_LEN;
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slen = strtox(outbuf, HTTP_RESPONCE_TXT);
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while (read_flash((CONFIG_START-CODE0_SIZE) / CODE_BANK_SIZE + 1,
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(__code uint8_t *) (((CONFIG_START + len_left - CODE0_SIZE) % CODE_BANK_SIZE) + CODE0_SIZE + len_left)) == 0xff) {
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print_short(len_left);
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len_left--;
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}
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len_left++;
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if (len_left > (TCP_OUTBUF_SIZE - slen)) {
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cont_len = len_left - (TCP_OUTBUF_SIZE - slen);
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len_left = TCP_OUTBUF_SIZE - slen;
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cont_addr = len_left;
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}
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flash_region.addr = CONFIG_START;
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flash_region.len = len_left;
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flash_read_bulk(outbuf + slen);
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slen += len_left;
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}
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void send_cmd_log(void)
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{
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print_string("send_cmd_log called\n");
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slen = strtox(outbuf, HTTP_RESPONCE_TXT);
|
|
__xdata uint16_t p = (cmd_history_ptr + 1) & CMD_HISTORY_MASK;
|
|
__xdata uint8_t found_begin = 0;
|
|
print_string("History ptr: ");
|
|
print_short(cmd_history_ptr); write_char('\n');
|
|
while (p != cmd_history_ptr) {
|
|
if (!cmd_history[p] || cmd_history[p] == '\n')
|
|
found_begin = 1;
|
|
if (found_begin && cmd_history[p])
|
|
outbuf[slen++] = cmd_history[p];
|
|
p = (p + 1) & CMD_HISTORY_MASK;
|
|
}
|
|
}
|