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driver-bitmain.h
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driver-bitmain.h
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/*
* Copyright 2013 BitMain project
* Copyright 2013 BitMain <xlc1985@126.com>
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of the GNU General Public License as published by the Free
* Software Foundation; either version 3 of the License, or (at your option)
* any later version. See COPYING for more details.
*/
#ifndef BITMAIN_H
#define BITMAIN_H
#ifdef USE_BITMAIN
#include <curl/curl.h>
#include "util.h"
//#define BITMAIN_TYPE_S1
//#define BITMAIN_TYPE_S2
//#define BITMAIN_TYPE_S3
#define BITMAIN_TYPE_S4
#define BITMAIN_MINER_THREADS 1
#define BITMAIN_RESET_PITCH (300*1000*1000)
#define BITMAIN_TOKEN_TYPE_TXCONFIG 0x51
#define BITMAIN_TOKEN_TYPE_TXTASK 0x52
#define BITMAIN_TOKEN_TYPE_RXSTATUS 0x53
#define BITMAIN_DATA_TYPE_RXSTATUS 0xa1
#define BITMAIN_DATA_TYPE_RXNONCE 0xa2
#define BITMAIN_FAN_FACTOR 60
#define BITMAIN_PWM_MAX 0xA0
#define BITMAIN_DEFAULT_FAN_MIN 20
#define BITMAIN_DEFAULT_FAN_MAX 100
#define BITMAIN_DEFAULT_FAN_MAX_PWM 0xA0 /* 100% */
#define BITMAIN_DEFAULT_FAN_MIN_PWM 0x20 /* 20% */
#define BITMAIN_DEFAULT_TIMEOUT 0x2D
#define BITMAIN_MIN_FREQUENCY 10
#define BITMAIN_MAX_FREQUENCY 1000000
#define BITMAIN_TIMEOUT_FACTOR 12690
#define BITMAIN_DEFAULT_FREQUENCY 282
#define BITMAIN_DEFAULT_VOLTAGE_T "0725"
#define BITMAIN_DEFAULT_VOLTAGE0 0x07
#define BITMAIN_DEFAULT_VOLTAGE1 0x25
#define BITMAIN_DEFAULT_CHAIN_NUM 8
#define BITMAIN_DEFAULT_ASIC_NUM 32
#define BITMAIN_DEFAULT_REG_DATA 0
#define BITMAIN_AUTO_CYCLE 1024
#define BITMAIN_FTDI_READSIZE 2048
#define BITMAIN_USB_PACKETSIZE 512
#define BITMAIN_SENDBUF_SIZE 8192
#define BITMAIN_READBUF_SIZE 8192
#define BITMAIN_RESET_TIMEOUT 100
#define BITMAIN_READ_TIMEOUT 18 /* Enough to only half fill the buffer */
#define BITMAIN_LATENCY 1
#define BITMAIN_MAX_CHAIN_NUM 16
#define BITMAIN_TASK_HEADER_SIZE 8
#define BITMAIN_TASK_FOOTER_SIZE 2
#define BITMAIN_WORK_SIZE 0x30
#define BITMAIN_MAX_PACKET_MAX_NONCE 0x80
#define BITMAIN_MAX_TEMP_NUM 32
#define BITMAIN_MAX_FAN_NUM 32
struct bitmain_packet_head {
uint8_t token_type;
uint8_t version;
uint16_t length;
} __attribute__((packed, aligned(4)));
struct bitmain_txconfig_token {
uint8_t token_type;
uint8_t version;
uint16_t length;
uint8_t reset :1;
uint8_t fan_eft :1;
uint8_t timeout_eft :1;
uint8_t frequency_eft :1;
uint8_t voltage_eft :1;
uint8_t chain_check_time_eft :1;
uint8_t chip_config_eft :1;
uint8_t hw_error_eft :1;
uint8_t beeper_ctrl :1;
uint8_t temp_over_ctrl :1;
uint8_t fan_home_mode :1;
uint8_t reserved1 :5;
uint8_t chain_check_time;
uint8_t reserved2;
uint8_t chain_num;
uint8_t asic_num;
uint8_t fan_pwm_data;
uint8_t timeout_data;
uint16_t frequency;
uint8_t voltage[2];
uint8_t reg_data[4];
uint8_t chip_address;
uint8_t reg_address;
uint16_t crc;
} __attribute__((packed, aligned(4)));
struct bitmain_rxstatus_token {
uint8_t token_type;
uint8_t version;
uint16_t length;
uint8_t chip_status_eft :1;
uint8_t detect_get :1;
uint8_t reserved1 :6;
uint8_t reserved2[3];
uint8_t chip_address;
uint8_t reg_address;
uint16_t crc;
} __attribute__((packed, aligned(4)));
struct bitmain_rxstatus_data {
uint8_t data_type;
uint8_t version;
uint16_t length;
uint8_t chip_value_eft :1;
uint8_t reserved1 :3;
uint8_t get_blk_num :4;
uint8_t chain_num;
uint16_t fifo_space;
uint8_t hw_version[4];
uint8_t fan_num;
uint8_t temp_num;
uint16_t fan_exist;
uint32_t temp_exist;
uint32_t nonce_error;
uint32_t reg_value;
uint32_t chain_asic_exist[BITMAIN_MAX_CHAIN_NUM*8];
uint32_t chain_asic_status[BITMAIN_MAX_CHAIN_NUM*8];
uint8_t chain_asic_num[BITMAIN_MAX_CHAIN_NUM];
uint8_t temp[BITMAIN_MAX_TEMP_NUM];
uint8_t fan[BITMAIN_MAX_FAN_NUM];
uint16_t crc;
} __attribute__((packed, aligned(4)));
struct bitmain_rxnonce_nonce {
uint32_t work_id;
uint32_t nonce;
} __attribute__((packed, aligned(4)));
struct bitmain_rxnonce_data {
uint8_t data_type;
uint8_t version;
uint16_t length;
uint16_t fifo_space;
uint16_t diff;
uint64_t total_nonce_num;
struct bitmain_rxnonce_nonce nonces[BITMAIN_MAX_PACKET_MAX_NONCE];
uint16_t crc;
} __attribute__((packed, aligned(4)));
enum bitmain_chip {
BMC_UNKNOWN,
BMC_BM1380,
BMC_BM1382,
BMC_BM1384,
};
struct bitmain_info {
void *device_curl;
SOCKETTYPE curl_sock;
enum bitmain_chip chip_type;
int chain_num;
int asic_num;
int chain_asic_num[BITMAIN_MAX_CHAIN_NUM];
uint32_t chain_asic_exist[BITMAIN_MAX_CHAIN_NUM*8];
uint32_t chain_asic_status[BITMAIN_MAX_CHAIN_NUM*8];
char chain_asic_status_t[BITMAIN_MAX_CHAIN_NUM][320];
int timeout;
int errorcount;
int errorcount2;
uint32_t nonce_error;
uint32_t last_nonce_error;
uint8_t reg_data[4];
unsigned packet_max_work; // BITMAIN_MAX_WORK_NUM
unsigned poll_prio_threshold; // BITMAIN_MAX_WORK_QUEUE_NUM
unsigned packet_max_nonce; // BITMAIN_MAX_NONCE_NUM
int fan_num;
int fan[BITMAIN_MAX_FAN_NUM];
int temp_num;
int temp[BITMAIN_MAX_TEMP_NUM];
int temp_max;
int temp_avg;
int temp_history_count;
int temp_history_index;
int temp_sum;
int temp_old;
int fan_pwm;
int frequency;
char frequency_t[256];
uint8_t voltage[2];
char voltage_t[8];
int diff;
float lowest_goal_diff;
uint32_t next_work_id;
int no_matching_work;
//int matching_work[BITMAIN_DEFAULT_CHAIN_NUM];
pthread_mutex_t qlock;
int fifo_space;
int max_fifo_space;
int hw_version[4];
int ready_to_queue;
uint8_t *queuebuf;
bool reset;
bool work_restart;
char g_miner_version[256];
uint8_t readbuf[BITMAIN_READBUF_SIZE];
int readbuf_offset;
};
#define BITMAIN_READ_SIZE 12
#define BTM_GETS_ERROR -1
#define BTM_GETS_OK 0
#define BTM_SEND_ERROR -1
#define BTM_SEND_OK 0
#define BITMAIN_READ_TIME(baud) ((double)BITMAIN_READ_SIZE * (double)8.0 / (double)(baud))
#define ASSERT1(condition) __maybe_unused static char sizeof_uint32_t_must_be_4[(condition)?1:-1]
#endif /* USE_BITMAIN */
#endif /* BITMAIN_H */