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[libftdi] / ftdipp / ftdi.cpp
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1/***************************************************************************
2 ftdi.cpp - C++ wraper for libftdi
3 -------------------
4 begin : Mon Oct 13 2008
5 copyright : (C) 2008 by Marek Vavruša
6 email : opensource@intra2net.com and marek@vavrusa.com
7 ***************************************************************************/
8/*
9Copyright (C) 2008 by Marek Vavruša
10
11The software in this package is distributed under the GNU General
12Public License version 2 (with a special exception described below).
13
14A copy of GNU General Public License (GPL) is included in this distribution,
15in the file COPYING.GPL.
16
17As a special exception, if other files instantiate templates or use macros
18or inline functions from this file, or you compile this file and link it
19with other works to produce a work based on this file, this file
20does not by itself cause the resulting work to be covered
21by the GNU General Public License.
22
23However the source code for this file must still be made available
24in accordance with section (3) of the GNU General Public License.
25
26This exception does not invalidate any other reasons why a work based
27on this file might be covered by the GNU General Public License.
28*/
29#include "ftdi.hpp"
30#include "ftdi.h"
31
32namespace Ftdi
33{
34
35class Context::Private
36{
37public:
38 Private()
39 : ftdi(0), dev(0), open(false)
40 {
41 ftdi = ftdi_new();
42 }
43
44 ~Private()
45 {
46 if (open)
47 ftdi_usb_close(ftdi);
48
49 ftdi_free(ftdi);
50 }
51
52 bool open;
53
54 struct ftdi_context* ftdi;
55 struct usb_device* dev;
56
57 std::string vendor;
58 std::string description;
59 std::string serial;
60};
61
62/*! \brief Constructor.
63 */
64Context::Context()
65 : d( new Private() )
66{
67}
68
69/*! \brief Destructor.
70 */
71Context::~Context()
72{
73}
74
75bool Context::is_open()
76{
77 return d->open;
78}
79
80int Context::open(int vendor, int product, const std::string& description, const std::string& serial)
81{
82 int ret = 0;
83
84 // Open device
85 if (description.empty() && serial.empty())
86 ret = ftdi_usb_open(d->ftdi, vendor, product);
87 else
88 ret = ftdi_usb_open_desc(d->ftdi, vendor, product, description.c_str(), serial.c_str());
89
90 if (ret < 0)
91 return ret;
92
93 // Get device strings (closes device)
94 get_strings();
95
96 // Reattach device
97 ret = ftdi_usb_open_dev(d->ftdi, d->dev);
98 d->open = (ret >= 0);
99
100 return ret;
101}
102
103int Context::open(struct usb_device *dev)
104{
105 if (dev != 0)
106 d->dev = dev;
107
108 if (d->dev == 0)
109 return -1;
110
111 // Get device strings (closes device)
112 get_strings();
113
114 // Reattach device
115 int ret = ftdi_usb_open_dev(d->ftdi, d->dev);
116 d->open = (ret >= 0);
117
118 return ret;
119}
120
121int Context::close()
122{
123 d->open = false;
124 return ftdi_usb_close(d->ftdi);
125}
126
127int Context::reset()
128{
129 return ftdi_usb_reset(d->ftdi);
130}
131
132int Context::flush(int mask)
133{
134 int ret = 1;
135
136 if (mask & Input)
137 ret &= ftdi_usb_purge_rx_buffer(d->ftdi);
138 if (mask & Output)
139 ret &= ftdi_usb_purge_tx_buffer(d->ftdi);
140
141 return ret;
142}
143
144int Context::set_interface(enum ftdi_interface interface)
145{
146 return ftdi_set_interface(d->ftdi, interface);
147}
148
149void Context::set_usb_device(struct usb_dev_handle *dev)
150{
151 ftdi_set_usbdev(d->ftdi, dev);
152 d->dev = usb_device(dev);
153}
154
155int Context::set_baud_rate(int baudrate)
156{
157 return ftdi_set_baudrate(d->ftdi, baudrate);
158}
159
160int Context::set_line_property(enum ftdi_bits_type bits, enum ftdi_stopbits_type sbit, enum ftdi_parity_type parity)
161{
162 return ftdi_set_line_property(d->ftdi, bits, sbit, parity);
163}
164
165int Context::set_line_property(enum ftdi_bits_type bits, enum ftdi_stopbits_type sbit, enum ftdi_parity_type parity, enum ftdi_break_type break_type)
166{
167 return ftdi_set_line_property2(d->ftdi, bits, sbit, parity, break_type);
168}
169
170int Context::read(unsigned char *buf, int size)
171{
172 return ftdi_read_data(d->ftdi, buf, size);
173}
174
175int Context::set_read_chunk_size(unsigned int chunksize)
176{
177 return ftdi_read_data_set_chunksize(d->ftdi, chunksize);
178}
179
180int Context::read_chunk_size()
181{
182 unsigned chunk = -1;
183 if (ftdi_read_data_get_chunksize(d->ftdi, &chunk) < 0)
184 return -1;
185
186 return chunk;
187}
188
189int Context::write(unsigned char *buf, int size)
190{
191 return ftdi_write_data(d->ftdi, buf, size);
192}
193
194int Context::set_write_chunk_size(unsigned int chunksize)
195{
196 return ftdi_write_data_set_chunksize(d->ftdi, chunksize);
197}
198
199int Context::write_chunk_size()
200{
201 unsigned chunk = -1;
202 if (ftdi_write_data_get_chunksize(d->ftdi, &chunk) < 0)
203 return -1;
204
205 return chunk;
206}
207
208int Context::set_flow_control(int flowctrl)
209{
210 return ftdi_setflowctrl(d->ftdi, flowctrl);
211}
212
213int Context::set_modem_control(int mask)
214{
215 int dtr = 0, rts = 0;
216
217 if (mask & Dtr)
218 dtr = 1;
219 if (mask & Rts)
220 rts = 1;
221
222 return ftdi_setdtr_rts(d->ftdi, dtr, rts);
223}
224
225int Context::set_dtr(bool state)
226{
227 return ftdi_setdtr(d->ftdi, state);
228}
229
230int Context::set_rts(bool state)
231{
232 return ftdi_setrts(d->ftdi, state);
233}
234
235int Context::set_latency(unsigned char latency)
236{
237 return ftdi_set_latency_timer(d->ftdi, latency);
238}
239
240unsigned Context::latency()
241{
242 unsigned char latency = 0;
243 ftdi_get_latency_timer(d->ftdi, &latency);
244 return latency;
245}
246
247unsigned short Context::poll_modem_status()
248{
249 unsigned short status = 0;
250 ftdi_poll_modem_status(d->ftdi, &status);
251 return status;
252}
253
254int Context::set_event_char(unsigned char eventch, unsigned char enable)
255{
256 return ftdi_set_event_char(d->ftdi, eventch, enable);
257}
258
259int Context::set_error_char(unsigned char errorch, unsigned char enable)
260{
261 return ftdi_set_error_char(d->ftdi, errorch, enable);
262}
263
264int Context::bitbang_enable(unsigned char bitmask)
265{
266 return ftdi_enable_bitbang(d->ftdi, bitmask);
267}
268
269int Context::bitbang_disable()
270{
271 return ftdi_disable_bitbang(d->ftdi);
272}
273
274int Context::set_bitmode(unsigned char bitmask, unsigned char mode)
275{
276 return ftdi_set_bitmode(d->ftdi, bitmask, mode);
277}
278
279int Context::read_pins(unsigned char *pins)
280{
281 return ftdi_read_pins(d->ftdi, pins);
282}
283
284char* Context::error_string()
285{
286 return ftdi_get_error_string(d->ftdi);
287}
288
289int Context::get_strings()
290{
291 // Prepare buffers
292 char vendor[512], desc[512], serial[512];
293
294 int ret = ftdi_usb_get_strings(d->ftdi, d->dev, vendor, 512, desc, 512, serial, 512);
295
296 if (ret < 0)
297 return -1;
298
299 d->vendor = vendor;
300 d->description = desc;
301 d->serial = serial;
302
303 return 1;
304}
305
306/*! \brief Device strings properties.
307 */
308const std::string& Context::vendor()
309{
310 return d->vendor;
311}
312
313/*! \brief Device strings properties.
314 */
315const std::string& Context::description()
316{
317 return d->description;
318}
319
320/*! \brief Device strings properties.
321 */
322const std::string& Context::serial()
323{
324 return d->serial;
325}
326
327void Context::set_context(struct ftdi_context* context)
328{
329 ftdi_free(d->ftdi);
330 d->ftdi = context;
331}
332
333void Context::set_usb_device(struct usb_device *dev)
334{
335 d->dev = dev;
336}
337
338struct ftdi_context* Context::context()
339{
340 return d->ftdi;
341}
342
343class Eeprom::Private
344{
345public:
346 Private()
347 : context(0)
348 {}
349
350 struct ftdi_eeprom eeprom;
351 struct ftdi_context* context;
352};
353
354Eeprom::Eeprom(Context* parent)
355 : d ( new Private() )
356{
357 d->context = parent->context();
358}
359
360Eeprom::~Eeprom()
361{
362}
363
364void Eeprom::init_defaults()
365{
366 return ftdi_eeprom_initdefaults(&d->eeprom);
367}
368
369void Eeprom::set_size(int size)
370{
371 return ftdi_eeprom_setsize(d->context, &d->eeprom, size);
372}
373
374int Eeprom::size(unsigned char *eeprom, int maxsize)
375{
376 return ftdi_read_eeprom_getsize(d->context, eeprom, maxsize);
377}
378
379int Eeprom::chip_id(unsigned int *chipid)
380{
381 return ftdi_read_chipid(d->context, chipid);
382}
383
384int Eeprom::build(unsigned char *output)
385{
386 return ftdi_eeprom_build(&d->eeprom, output);
387}
388
389int Eeprom::read(unsigned char *eeprom)
390{
391 return ftdi_read_eeprom(d->context, eeprom);
392}
393
394int Eeprom::write(unsigned char *eeprom)
395{
396 return ftdi_write_eeprom(d->context, eeprom);
397}
398
399int Eeprom::erase()
400{
401 return ftdi_erase_eeprom(d->context);
402}
403
404class List::Private
405{
406public:
407 Private(struct ftdi_device_list* _devlist)
408 : devlist(_devlist)
409 {}
410
411 ~Private()
412 {
413 if(devlist)
414 ftdi_list_free(&devlist);
415 }
416
417 std::list<Context> list;
418 struct ftdi_device_list* devlist;
419};
420
421List::List(struct ftdi_device_list* devlist)
422 : d( new Private(devlist) )
423{
424 if (devlist != 0)
425 {
426 // Iterate list
427 for (; devlist != 0; devlist = devlist->next)
428 {
429 Context c;
430 c.set_usb_device(devlist->dev);
431 c.get_strings();
432 d->list.push_back(c);
433 }
434 }
435}
436
437List::~List()
438{
439}
440
441/**
442* Return begin iterator for accessing the contained list elements
443* @return Iterator
444*/
445List::iterator List::begin()
446{
447 return d->list.begin();
448}
449
450/**
451* Return end iterator for accessing the contained list elements
452* @return Iterator
453*/
454List::iterator List::end()
455{
456 return d->list.end();
457}
458
459/**
460* Return begin iterator for accessing the contained list elements
461* @return Const iterator
462*/
463List::const_iterator List::begin() const
464{
465 return d->list.begin();
466}
467
468/**
469* Return end iterator for accessing the contained list elements
470* @return Const iterator
471*/
472List::const_iterator List::end() const
473{
474 return d->list.end();
475}
476
477/**
478* Return begin reverse iterator for accessing the contained list elements
479* @return Reverse iterator
480*/
481List::reverse_iterator List::rbegin()
482{
483 return d->list.rbegin();
484}
485
486/**
487* Return end reverse iterator for accessing the contained list elements
488* @return Reverse iterator
489*/
490List::reverse_iterator List::rend()
491{
492 return d->list.rend();
493}
494
495/**
496* Return begin reverse iterator for accessing the contained list elements
497* @return Const reverse iterator
498*/
499List::const_reverse_iterator List::rbegin() const
500{
501 return d->list.rbegin();
502}
503
504/**
505* Return end reverse iterator for accessing the contained list elements
506* @return Const reverse iterator
507*/
508List::const_reverse_iterator List::rend() const
509{
510 return d->list.rend();
511
512}
513
514/**
515* Get number of elements stored in the list
516* @return Number of elements
517*/
518List::ListType::size_type List::size() const
519{
520 return d->list.size();
521}
522
523/**
524* Check if list is empty
525* @return True if empty, false otherwise
526*/
527bool List::empty() const
528{
529 return d->list.empty();
530}
531
532/**
533 * Removes all elements. Invalidates all iterators.
534 * Do it in a non-throwing way and also make
535 * sure we really free the allocated memory.
536 */
537void List::clear()
538{
539 ListType().swap(d->list);
540
541 // Free device list
542 if (d->devlist)
543 {
544 ftdi_list_free(&d->devlist);
545 d->devlist = 0;
546 }
547}
548
549/**
550 * Appends a copy of the element as the new last element.
551 * @param element Value to copy and append
552*/
553void List::push_back(const Context& element)
554{
555 d->list.push_back(element);
556}
557
558/**
559 * Adds a copy of the element as the new first element.
560 * @param element Value to copy and add
561*/
562void List::push_front(const Context& element)
563{
564 d->list.push_front(element);
565}
566
567/**
568 * Erase one element pointed by iterator
569 * @param pos Element to erase
570 * @return Position of the following element (or end())
571*/
572List::iterator List::erase(iterator pos)
573{
574 return d->list.erase(pos);
575}
576
577/**
578 * Erase a range of elements
579 * @param beg Begin of range
580 * @param end End of range
581 * @return Position of the element after the erased range (or end())
582*/
583List::iterator List::erase(iterator beg, iterator end)
584{
585 return d->list.erase(beg, end);
586}
587
588List* List::find_all(int vendor, int product)
589{
590 struct ftdi_device_list* dlist = 0;
591 struct ftdi_context ftdi;
592 ftdi_init(&ftdi);
593 ftdi_usb_find_all(&ftdi, &dlist, vendor, product);
594 ftdi_deinit(&ftdi);
595 return new List(dlist);
596}
597
598}