Mercurial > hg > hid-usb-to-ir
comparison hid-usb-to-ir.c @ 0:c6e3b362f9cf v0.2
import
author | Peter Meerwald <p.meerwald@bct-electronic.com> |
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date | Thu, 03 Jan 2013 13:08:39 +0100 |
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children | 95b8b8a0b2d0 |
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-1:000000000000 | 0:c6e3b362f9cf |
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1 /* | |
2 * Demo program for the Silabs IR Gesture USB Reference Design, | |
3 * http://www.silabs.com/products/sensors/Pages/HID-USB-to-IR-Reference-Design.aspx | |
4 * | |
5 * Reads the part number of the cp2112 bridge, | |
6 * http://www.silabs.com/products/interface/usbtouart/Pages/HID-USB-to-SMBus-Bridge.aspx, | |
7 * and the part/revision/sequencer version of the si1143 via SMBus/I2C, | |
8 * finally lets the four blue LEDs dance :). | |
9 * | |
10 * Copyright (c) 2012 Peter Meerwald, <pmeerw@pmeerw.net> | |
11 * Released under GPLv3 license, see http://www.gnu.org/licenses/gpl-3.0.html. | |
12 * | |
13 * Depends on the HID API multi-platform library, available from | |
14 * http://www.signal11.us/oss/hidapi/. | |
15 * | |
16 * Build with | |
17 * gcc -Wall -g -o hid-usb-to-ir hid-usb-to-ir.c `pkg-config hidapi-hidraw --libs` | |
18 * | |
19 * May need root permission to access USB device (or appropriate udev rule). | |
20 * | |
21 * Based upon information from Silabs AN495 v0.2. | |
22 */ | |
23 | |
24 #include <stdio.h> | |
25 #include <stdlib.h> | |
26 #include <string.h> | |
27 #include <unistd.h> | |
28 #include "hidapi/hidapi.h" | |
29 | |
30 #define SI114X_SLAVE_ADDR 0x5a | |
31 #define SI114X_HWKEY 0x07 | |
32 #define SI114x_PART_ID 0x00 | |
33 #define SI114x_REV_ID 0x01 | |
34 #define SI114x_SEQ_ID 0x02 | |
35 | |
36 #define CP2112_GETSET_GPIO_CONFIG 0x02 | |
37 #define CP2112_GET_GPIO 0x03 | |
38 #define CP2112_SET_GPIO 0x04 | |
39 #define CP2122_GET_VERSION_INFO 0x05 | |
40 #define CP2112_GETSET_SMBUS_CONFIG 0x06 | |
41 #define CP2112_DATA_WRITE_READ_REQ 0x11 | |
42 #define CP2112_DATA_READ_RESP 0x13 | |
43 #define CP2112_DATA_WRITE 0x14 | |
44 #define CP2112_TRANSFER_STATUS_REQ 0x15 | |
45 #define CP2112_TRANSFER_STATUS_RESP 0x16 | |
46 | |
47 #define CP2112_LED_DOWN 0x01 /* LED DS2, GPIO 0 */ | |
48 #define CP2112_LED_UP 0x02 /* LED DS3, GPIO 1 */ | |
49 #define CP2112_LED_RIGHT 0x08 /* LED DS8, GPIO 3 */ | |
50 #define CP2112_LED_LEFT 0x80 /* LED DS4, GPIO 7 */ | |
51 #define CP2112_LEDS_MASK (CP2112_LED_DOWN | CP2112_LED_UP | \ | |
52 CP2112_LED_RIGHT | CP2112_LED_LEFT) | |
53 | |
54 /* get cp2112 part number and version */ | |
55 static int cp2112_get_version(hid_device *hd, unsigned char data[2]) { | |
56 unsigned char buf[3] = { CP2122_GET_VERSION_INFO, }; | |
57 | |
58 int ret = hid_get_feature_report(hd, buf, sizeof(buf)); | |
59 if (ret < 0) { | |
60 fprintf(stderr, "hid_get_feature_report() failed: %ls\n", | |
61 hid_error(hd)); | |
62 return -1; | |
63 } | |
64 | |
65 data[0] = buf[1]; /* part number */ | |
66 data[1] = buf[2]; /* version */ | |
67 | |
68 return 0; | |
69 } | |
70 | |
71 /* configures cp2112 to automatically send read data, see AN495 section 4.6 */ | |
72 static int cp2112_set_auto_send_read(hid_device *hd, int on_off) { | |
73 unsigned char buf[14] = { CP2112_GETSET_SMBUS_CONFIG, }; | |
74 int ret = hid_get_feature_report(hd, buf, sizeof(buf)); | |
75 if (ret < 0) { | |
76 fprintf(stderr, "hid_get_feature_report() failed: %ls\n", | |
77 hid_error(hd)); | |
78 return -1; | |
79 } | |
80 | |
81 buf[6] = on_off; | |
82 | |
83 ret = hid_send_feature_report(hd, buf, sizeof(buf)); | |
84 if (ret < 0) { | |
85 fprintf(stderr, "hid_send_feature_report() failed: %ls\n", | |
86 hid_error(hd)); | |
87 return -1; | |
88 } | |
89 | |
90 return 0; | |
91 } | |
92 | |
93 /* see if the cp2112 is idle */ | |
94 static int cp2112_is_idle(hid_device *hd) { | |
95 unsigned char status_req[2] = { CP2112_TRANSFER_STATUS_REQ, 0x01, }; | |
96 if (hid_write(hd, status_req, sizeof(status_req)) < 0) { | |
97 fprintf(stderr, "hid_write() failed: %ls\n", | |
98 hid_error(hd)); | |
99 return -1; | |
100 } | |
101 | |
102 unsigned char status_resp[7] = { 0x00, }; | |
103 if (hid_read(hd, status_resp, sizeof(status_resp)) < 0) { | |
104 fprintf(stderr, "hid_read() failed: %ls\n", | |
105 hid_error(hd)); | |
106 return -1; | |
107 } | |
108 | |
109 if (status_resp[0] == CP2112_TRANSFER_STATUS_RESP) { | |
110 if (status_resp[1] == 0x00) /* is idle? */ | |
111 return 1; | |
112 } | |
113 | |
114 return 0; | |
115 } | |
116 | |
117 /* write a data byte to register reg of the si1143 */ | |
118 static int cp2112_write_byte(hid_device *hd, unsigned char reg, unsigned char data) { | |
119 /* 0x5a is the 7-bit SMBus slave address of the si1143 */ | |
120 unsigned char buf_out[5] = { CP2112_DATA_WRITE, SI114X_SLAVE_ADDR<<1, 0x02, }; | |
121 buf_out[3] = reg; | |
122 buf_out[4] = data; | |
123 int ret = hid_write(hd, buf_out, sizeof(buf_out)); | |
124 if (ret < 0) { | |
125 fprintf(stderr, "hid_write() failed: %ls\n", | |
126 hid_error(hd)); | |
127 return -1; | |
128 } | |
129 | |
130 return 0; | |
131 } | |
132 | |
133 /* read a data byte from register reg of the si1143 */ | |
134 static int cp2112_read_byte(hid_device *hd, unsigned char reg, unsigned char data[1]) { | |
135 /* 0x5a is the 7-bit SMBus slave address of the si1143 */ | |
136 unsigned char buf_out[6] = { CP2112_DATA_WRITE_READ_REQ, | |
137 SI114X_SLAVE_ADDR<<1, 0x00, 0x01, 0x01, }; | |
138 buf_out[5] = reg; | |
139 int ret = hid_write(hd, buf_out, sizeof(buf_out)); | |
140 if (ret < 0) { | |
141 fprintf(stderr, "hid_write() failed: %ls\n", | |
142 hid_error(hd)); | |
143 return -1; | |
144 } | |
145 | |
146 /* FIXME: may loop forever, error handling needed */ | |
147 while (1) { | |
148 | |
149 unsigned char buf_in[8] = { 0x00, }; | |
150 ret = hid_read(hd, buf_in, sizeof(buf_in)); | |
151 if (ret < 0) { | |
152 fprintf(stderr, "hid_read_() failed: %ls\n", | |
153 hid_error(hd)); | |
154 return -1; | |
155 } | |
156 | |
157 | |
158 if (buf_in[0] == CP2112_TRANSFER_STATUS_REQ) | |
159 continue; | |
160 | |
161 if (buf_in[0] == CP2112_DATA_READ_RESP) { | |
162 if (buf_in[1] == 0x02 && buf_in[2] == 0x00) | |
163 continue; /* no data yet */ | |
164 if (buf_in[1] == 0x02 && buf_in[2] == 0x01) { | |
165 data[0] = buf_in[3]; /* data available */ | |
166 return 0; | |
167 } | |
168 } | |
169 } | |
170 | |
171 return -1; | |
172 } | |
173 | |
174 /* configure cp2112 GPIO pins */ | |
175 static int cp2112_config_gpio(hid_device *hd) { | |
176 unsigned char buf[5] = { CP2112_GETSET_GPIO_CONFIG, }; | |
177 int ret = hid_get_feature_report(hd, buf, sizeof(buf)); | |
178 if (ret < 0) { | |
179 fprintf(stderr, "hid_get_feature_report() failed: %ls\n", | |
180 hid_error(hd)); | |
181 return -1; | |
182 } | |
183 | |
184 buf[1] = 0x8b; /* output direction for GPIOs 0, 1, 3, 7 */ | |
185 buf[2] = 0x8b; /* push-pull for GPIOs 0, 1, 3, 7 */ | |
186 buf[3] = 0x00; /* no special functions, i.e. use pins as GPIO */ | |
187 | |
188 ret = hid_send_feature_report(hd, buf, sizeof(buf)); | |
189 if (ret < 0) { | |
190 fprintf(stderr, "hid_send_feature_report() failed: %ls\n", | |
191 hid_error(hd)); | |
192 return -1; | |
193 } | |
194 | |
195 return 0; | |
196 } | |
197 | |
198 /* set cp2112 GPIO pins */ | |
199 static int cp2112_set_gpio(hid_device *hd, unsigned char mask, unsigned char value) { | |
200 unsigned char buf[3] = { CP2112_SET_GPIO, }; | |
201 | |
202 buf[1] = ~value; /* set GPIO pins: 0 .. turn LED on, 1 .. off */ | |
203 buf[2] = mask; /* mask of pins to set, ignore others */ | |
204 | |
205 int ret = hid_send_feature_report(hd, buf, sizeof(buf)); | |
206 if (ret < 0) { | |
207 fprintf(stderr, "hid_send_feature_report() failed: %ls\n", | |
208 hid_error(hd)); | |
209 return -1; | |
210 } | |
211 | |
212 return 0; | |
213 } | |
214 | |
215 int main() { | |
216 if (hid_init() < 0) { | |
217 fprintf(stderr, "hid_init() failed, exit.\n"); | |
218 exit(EXIT_FAILURE); | |
219 } | |
220 | |
221 /* open Silabs IR Gesture USB reference design by USB product:vendor id */ | |
222 hid_device *hd = hid_open(0x10c4, 0xea90, NULL); | |
223 if (hd == NULL) { | |
224 fprintf(stderr, "hid_open() failed\n"); | |
225 exit(EXIT_FAILURE); | |
226 } | |
227 | |
228 unsigned char version_data[2]; | |
229 if (cp2112_get_version(hd, version_data) < 0) | |
230 exit(EXIT_FAILURE); | |
231 printf("cp2112 part number 0x%02x, device version %d\n", | |
232 version_data[0], version_data[1]); | |
233 | |
234 if (cp2112_set_auto_send_read(hd, 1) < 0) | |
235 exit(EXIT_FAILURE); | |
236 | |
237 /* write 0x17 to si114x HW_KEY register as per datasheet */ | |
238 if (cp2112_write_byte(hd, SI114X_HWKEY, 0x17) < 0) | |
239 exit(EXIT_FAILURE); | |
240 | |
241 unsigned char part, rev, seq; | |
242 if (cp2112_read_byte(hd, SI114x_PART_ID, &part) < 0) | |
243 exit(EXIT_FAILURE); | |
244 | |
245 if (cp2112_read_byte(hd, SI114x_REV_ID, &rev) < 0) | |
246 exit(EXIT_FAILURE); | |
247 | |
248 if (cp2112_read_byte(hd, SI114x_SEQ_ID, &seq) < 0) | |
249 exit(EXIT_FAILURE); | |
250 printf("si114x part number 0x%02x, revision 0x%02x, sequencer 0x%02x\n", | |
251 part, rev, seq); | |
252 | |
253 cp2112_is_idle(hd); | |
254 | |
255 if (cp2112_config_gpio(hd) < 0) | |
256 exit(EXIT_FAILURE); | |
257 | |
258 while (1) { | |
259 if (cp2112_set_gpio(hd, CP2112_LEDS_MASK, CP2112_LED_DOWN) < 0) | |
260 exit(EXIT_FAILURE); | |
261 usleep(50*1000); | |
262 if (cp2112_set_gpio(hd, CP2112_LEDS_MASK, CP2112_LED_RIGHT) < 0) | |
263 exit(EXIT_FAILURE); | |
264 usleep(50*1000); | |
265 if (cp2112_set_gpio(hd, CP2112_LEDS_MASK, CP2112_LED_UP) < 0) | |
266 exit(EXIT_FAILURE); | |
267 usleep(50*1000); | |
268 if (cp2112_set_gpio(hd, CP2112_LEDS_MASK, CP2112_LED_LEFT) < 0) | |
269 exit(EXIT_FAILURE); | |
270 usleep(50*1000); | |
271 } | |
272 | |
273 /* never get here */ | |
274 printf("done\n"); | |
275 | |
276 hid_close(hd); | |
277 hid_exit(); | |
278 | |
279 return EXIT_SUCCESS; | |
280 } |