libftdi: (gerd) fix changelog typo
[libftdi] / src / ftdi.h
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1/***************************************************************************
2 ftdi.h - description
3 -------------------
4 begin : Fri Apr 4 2003
5 copyright : (C) 2003 by Intra2net AG
5fdb1cb1 6 email : opensource@intra2net.com
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7 ***************************************************************************/
8
9/***************************************************************************
10 * *
11 * This program is free software; you can redistribute it and/or modify *
12 * it under the terms of the GNU Lesser General Public License *
13 * version 2.1 as published by the Free Software Foundation; *
14 * *
15 ***************************************************************************/
16
17#ifndef __libftdi_h__
18#define __libftdi_h__
19
98452d97 20#include <usb.h>
0e302db6 21
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22#define FTDI_DEFAULT_EEPROM_SIZE 128
23
9bec2387 24/// FTDI chip type
cb6250fa 25enum ftdi_chip_type { TYPE_AM=0, TYPE_BM=1, TYPE_2232C=2, TYPE_R=3 };
9bec2387 26/// Parity mode for ftdi_set_line_property()
2f73e59f 27enum ftdi_parity_type { NONE=0, ODD=1, EVEN=2, MARK=3, SPACE=4 };
9bec2387 28/// Number of stop bits for ftdi_set_line_property()
2f73e59f 29enum ftdi_stopbits_type { STOP_BIT_1=0, STOP_BIT_15=1, STOP_BIT_2=2 };
9bec2387 30/// Number of bits ftdi_set_line_property()
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31enum ftdi_bits_type { BITS_7=7, BITS_8=8 };
32
9bec2387 33/// MPSSE bitbang modes
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34enum ftdi_mpsse_mode {
35 BITMODE_RESET = 0x00,
36 BITMODE_BITBANG= 0x01,
37 BITMODE_MPSSE = 0x02,
38 BITMODE_SYNCBB = 0x04,
39 BITMODE_MCU = 0x08,
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40 // CPU-style fifo mode gets set via EEPROM
41 BITMODE_OPTO = 0x10,
42 BITMODE_CBUS = 0x20
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43};
44
9bec2387 45/// Port interface for FT2232C
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46enum ftdi_interface {
47 INTERFACE_ANY = 0,
48 INTERFACE_A = 1,
49 INTERFACE_B = 2
50};
51
52/* Shifting commands IN MPSSE Mode*/
53#define MPSSE_WRITE_NEG 0x01 /* Write TDI/DO on negative TCK/SK edge*/
54#define MPSSE_BITMODE 0x02 /* Write bits, not bytes */
55#define MPSSE_READ_NEG 0x04 /* Sample TDO/DI on negative TCK/SK edge */
56#define MPSSE_LSB 0x08 /* LSB first */
57#define MPSSE_DO_WRITE 0x10 /* Write TDI/DO */
58#define MPSSE_DO_READ 0x20 /* Read TDO/DI */
59#define MPSSE_WRITE_TMS 0x40 /* Write TMS/CS */
60
61/* FTDI MPSSE commands */
62#define SET_BITS_LOW 0x80
63/*BYTE DATA*/
64/*BYTE Direction*/
65#define SET_BITS_HIGH 0x82
66/*BYTE DATA*/
67/*BYTE Direction*/
68#define GET_BITS_LOW 0x81
69#define GET_BITS_HIGH 0x83
70#define LOOPBACK_START 0x84
71#define LOOPBACK_END 0x85
72#define TCK_DIVISOR 0x86
73/* Value Low */
74/* Value HIGH */ /*rate is 12000000/((1+value)*2) */
75#define DIV_VALUE(rate) (rate > 6000000)?0:((6000000/rate -1) > 0xffff)? 0xffff: (6000000/rate -1)
76
77/* Commands in MPSSE and Host Emulation Mode */
78#define SEND_IMMEDIATE 0x87
79#define WAIT_ON_HIGH 0x88
80#define WAIT_ON_LOW 0x89
81
82/* Commands in Host Emulation Mode */
83#define READ_SHORT 0x90
84/* Address_Low */
85#define READ_EXTENDED 0x91
86/* Address High */
87/* Address Low */
88#define WRITE_SHORT 0x92
89/* Address_Low */
90#define WRITE_EXTENDED 0x93
91/* Address High */
92/* Address Low */
53ad271d 93
a01d31e2 94/* Definitions for flow control */
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95#define SIO_MODEM_CTRL 1 /* Set the modem control register */
96#define SIO_SET_FLOW_CTRL 2 /* Set flow control register */
97
98#define SIO_SET_FLOW_CTRL_REQUEST_TYPE 0x40
99#define SIO_SET_FLOW_CTRL_REQUEST SIO_SET_FLOW_CTRL
100
101#define SIO_DISABLE_FLOW_CTRL 0x0
102#define SIO_RTS_CTS_HS (0x1 << 8)
103#define SIO_DTR_DSR_HS (0x2 << 8)
104#define SIO_XON_XOFF_HS (0x4 << 8)
105
106#define SIO_SET_MODEM_CTRL_REQUEST_TYPE 0x40
107#define SIO_SET_MODEM_CTRL_REQUEST SIO_MODEM_CTRL
108
109#define SIO_SET_DTR_MASK 0x1
110#define SIO_SET_DTR_HIGH ( 1 | ( SIO_SET_DTR_MASK << 8))
111#define SIO_SET_DTR_LOW ( 0 | ( SIO_SET_DTR_MASK << 8))
112#define SIO_SET_RTS_MASK 0x2
113#define SIO_SET_RTS_HIGH ( 2 | ( SIO_SET_RTS_MASK << 8 ))
114#define SIO_SET_RTS_LOW ( 0 | ( SIO_SET_RTS_MASK << 8 ))
115
116#define SIO_RTS_CTS_HS (0x1 << 8)
117
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118/* marker for unused usb urb structures
119 (taken from libusb) */
120#define FTDI_URB_USERCONTEXT_COOKIE ((void *)0x1)
121
9bec2387 122/**
b5ec1820 123 \brief Main context structure for all libftdi functions.
a01d31e2 124
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125 Do not access directly if possible.
126*/
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127struct ftdi_context {
128 // USB specific
9bec2387 129 /// libusb's usb_dev_handle
98452d97 130 struct usb_dev_handle *usb_dev;
9bec2387 131 /// usb read timeout
545820ce 132 int usb_read_timeout;
9bec2387 133 /// usb write timeout
545820ce 134 int usb_write_timeout;
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135
136 // FTDI specific
9bec2387 137 /// FTDI chip type
53ad271d 138 enum ftdi_chip_type type;
9bec2387 139 /// baudrate
a3da1d95 140 int baudrate;
9bec2387 141 /// bitbang mode state
a3da1d95 142 unsigned char bitbang_enabled;
9bec2387 143 /// pointer to read buffer for ftdi_read_data
948f9ada 144 unsigned char *readbuffer;
9bec2387 145 /// read buffer offset
4ece2c24 146 unsigned int readbuffer_offset;
9bec2387 147 /// number of remaining data in internal read buffer
4ece2c24 148 unsigned int readbuffer_remaining;
9bec2387 149 /// read buffer chunk size
948f9ada 150 unsigned int readbuffer_chunksize;
9bec2387 151 /// write buffer chunk size
948f9ada 152 unsigned int writebuffer_chunksize;
d9f0cce7 153
545820ce 154 // FTDI FT2232C requirecments
9bec2387 155 /// FT2232C interface number: 0 or 1
545820ce 156 int interface; // 0 or 1
9bec2387 157 /// FT2232C index number: 1 or 2
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158 int index; // 1 or 2
159 // Endpoints
9bec2387 160 /// FT2232C end points: 1 or 2
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161 int in_ep;
162 int out_ep; // 1 or 2
c3d95b87 163
9bec2387 164 /// Bitbang mode. 1: (default) Normal bitbang mode, 2: FT2232C SPI bitbang mode
3119537f 165 unsigned char bitbang_mode;
545820ce 166
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167 /// EEPROM size. Default is 128 bytes for 232BM and 245BM chips
168 int eeprom_size;
169
9bec2387 170 /// String representation of last error
a3da1d95 171 char *error_str;
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172
173 /// Buffer needed for async communication
174 char *async_usb_buffer;
175 /// Number of URB-structures we can buffer
176 unsigned int async_usb_buffer_size;
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177};
178
9bec2387 179/**
b5ec1820 180 \brief list of usb devices created by ftdi_usb_find_all()
9bec2387 181*/
edb82cbf 182struct ftdi_device_list {
9bec2387 183 /// pointer to next entry
edb82cbf 184 struct ftdi_device_list *next;
9bec2387 185 /// pointer to libusb's usb_device
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186 struct usb_device *dev;
187};
188
9bec2387 189/**
b5ec1820 190 \brief FTDI eeprom structure
9bec2387 191*/
b8aa7b35 192struct ftdi_eeprom {
9bec2387 193 /// vendor id
d9f0cce7 194 int vendor_id;
9bec2387 195 /// product id
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196 int product_id;
197
9bec2387 198 /// self powered
d9f0cce7 199 int self_powered;
9bec2387 200 /// remote wakepu
b8aa7b35 201 int remote_wakeup;
9bec2387 202 /// chip type
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203 int BM_type_chip;
204
9bec2387 205 /// input in isochronous transfer mode
b8aa7b35 206 int in_is_isochronous;
9bec2387 207 /// output in isochronous transfer mode
b8aa7b35 208 int out_is_isochronous;
9bec2387 209 /// suspend pull downs
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210 int suspend_pull_downs;
211
9bec2387 212 /// use serial
b8aa7b35 213 int use_serial;
9bec2387 214 /// fake usb version
b8aa7b35 215 int change_usb_version;
9bec2387 216 /// usb version
b8aa7b35 217 int usb_version;
9bec2387 218 /// maximum power
b8aa7b35 219 int max_power;
d9f0cce7 220
9bec2387 221 /// manufacturer name
b8aa7b35 222 char *manufacturer;
9bec2387 223 /// product name
b8aa7b35 224 char *product;
9bec2387 225 /// serial number
b8aa7b35 226 char *serial;
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227
228 /// eeprom size in bytes. This doesn't get stored in the eeprom
229 /// but is the only way to pass it to ftdi_eeprom_build.
230 int size;
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231};
232
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233#ifdef __cplusplus
234extern "C" {
235#endif
236
237 int ftdi_init(struct ftdi_context *ftdi);
cef378aa 238 struct ftdi_context *ftdi_new();
0ce2f5fa 239 int ftdi_set_interface(struct ftdi_context *ftdi, enum ftdi_interface interface);
c4446c36 240
948f9ada 241 void ftdi_deinit(struct ftdi_context *ftdi);
cef378aa 242 void ftdi_free(struct ftdi_context *ftdi);
98452d97 243 void ftdi_set_usbdev (struct ftdi_context *ftdi, usb_dev_handle *usbdev);
a01d31e2 244
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245 int ftdi_usb_find_all(struct ftdi_context *ftdi, struct ftdi_device_list **devlist,
246 int vendor, int product);
247 void ftdi_list_free(struct ftdi_device_list **devlist);
cef378aa 248 void ftdi_list_free2(struct ftdi_device_list *devlist);
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249 int ftdi_usb_get_strings(struct ftdi_context *ftdi, struct usb_device *dev,
250 char * manufacturer, int mnf_len,
251 char * description, int desc_len,
252 char * serial, int serial_len);
a01d31e2 253
a3da1d95 254 int ftdi_usb_open(struct ftdi_context *ftdi, int vendor, int product);
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255 int ftdi_usb_open_desc(struct ftdi_context *ftdi, int vendor, int product,
256 const char* description, const char* serial);
edb82cbf 257 int ftdi_usb_open_dev(struct ftdi_context *ftdi, struct usb_device *dev);
1941414d 258
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259 int ftdi_usb_close(struct ftdi_context *ftdi);
260 int ftdi_usb_reset(struct ftdi_context *ftdi);
a60be878 261 int ftdi_usb_purge_buffers(struct ftdi_context *ftdi);
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262
263 int ftdi_set_baudrate(struct ftdi_context *ftdi, int baudrate);
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264 int ftdi_set_line_property(struct ftdi_context *ftdi, enum ftdi_bits_type bits,
265 enum ftdi_stopbits_type sbit, enum ftdi_parity_type parity);
948f9ada 266
be5d7eec 267 int ftdi_read_data(struct ftdi_context *ftdi, unsigned char *buf, int size);
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268 int ftdi_read_data_set_chunksize(struct ftdi_context *ftdi, unsigned int chunksize);
269 int ftdi_read_data_get_chunksize(struct ftdi_context *ftdi, unsigned int *chunksize);
270
271 int ftdi_write_data(struct ftdi_context *ftdi, unsigned char *buf, int size);
272 int ftdi_write_data_set_chunksize(struct ftdi_context *ftdi, unsigned int chunksize);
273 int ftdi_write_data_get_chunksize(struct ftdi_context *ftdi, unsigned int *chunksize);
a3da1d95 274
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275 int ftdi_write_data_async(struct ftdi_context *ftdi, unsigned char *buf, int size);
276 void ftdi_async_complete(struct ftdi_context *ftdi, int wait_for_more);
277
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278 int ftdi_enable_bitbang(struct ftdi_context *ftdi, unsigned char bitmask);
279 int ftdi_disable_bitbang(struct ftdi_context *ftdi);
c4446c36 280 int ftdi_set_bitmode(struct ftdi_context *ftdi, unsigned char bitmask, unsigned char mode);
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281 int ftdi_read_pins(struct ftdi_context *ftdi, unsigned char *pins);
282
283 int ftdi_set_latency_timer(struct ftdi_context *ftdi, unsigned char latency);
284 int ftdi_get_latency_timer(struct ftdi_context *ftdi, unsigned char *latency);
285
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286 // set eeprom size
287 void ftdi_eeprom_setsize(struct ftdi_context *ftdi, struct ftdi_eeprom *eeprom, int size);
288
98452d97 289 // init and build eeprom from ftdi_eeprom structure
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290 void ftdi_eeprom_initdefaults(struct ftdi_eeprom *eeprom);
291 int ftdi_eeprom_build(struct ftdi_eeprom *eeprom, unsigned char *output);
292
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293 // "eeprom" needs to be valid 128 byte eeprom (generated by the eeprom generator)
294 // the checksum of the eeprom is valided
be5d7eec 295 int ftdi_read_eeprom(struct ftdi_context *ftdi, unsigned char *eeprom);
cb6250fa 296 int ftdi_read_chipid(struct ftdi_context *ftdi, unsigned int *chipid);
c201f80f 297 int ftdi_read_eeprom_getsize(struct ftdi_context *ftdi, unsigned char *eeprom, int maxsize);
be5d7eec 298 int ftdi_write_eeprom(struct ftdi_context *ftdi, unsigned char *eeprom);
b8aa7b35 299 int ftdi_erase_eeprom(struct ftdi_context *ftdi);
a3da1d95 300
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301 char *ftdi_get_error_string(struct ftdi_context *ftdi);
302
9bec2387 303 // flow control
a01d31e2 304 int ftdi_setflowctrl(struct ftdi_context *ftdi, int flowctrl);
a01d31e2 305 int ftdi_setdtr(struct ftdi_context *ftdi, int state);
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306 int ftdi_setrts(struct ftdi_context *ftdi, int state);
307
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308#ifdef __cplusplus
309}
310#endif
311
312#endif /* __libftdi_h__ */