1 /* am7xxx - communication with AM7xxx based USB Pico Projectors and DPFs
3 * Copyright (C) 2012 Antonio Ospite <ospite@studenti.unina.it>
5 * This program is free software: you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation, either version 2 of the License, or
8 * (at your option) any later version.
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
15 * You should have received a copy of the GNU General Public License
16 * along with this program. If not, see <http://www.gnu.org/licenses/>.
28 #include "serialize.h"
30 #define ARRAY_SIZE(x) (sizeof(x) / sizeof((x)[0]))
32 /* If we're not using GNU C, elide __attribute__
33 * taken from: http://unixwiz.net/techtips/gnu-c-attributes.html)
36 # define __attribute__(x) /*NOTHING*/
39 /* Control shared library symbols visibility */
40 #if defined _WIN32 || defined __CYGWIN__
41 #define AM7XXX_PUBLIC __declspec(dllexport)
45 #define AM7XXX_PUBLIC __attribute__ ((visibility ("default")))
46 #define AM7XXX_LOCAL __attribute__ ((visibility ("hidden")))
53 static void log_message(am7xxx_context *ctx,
58 ...) __attribute__ ((format (printf, 5, 6)));
60 #define fatal(...) log_message(NULL, AM7XXX_LOG_FATAL, __func__, __LINE__, __VA_ARGS__)
61 #define error(ctx, ...) log_message(ctx, AM7XXX_LOG_ERROR, __func__, __LINE__, __VA_ARGS__)
62 #define warning(ctx, ...) log_message(ctx, AM7XXX_LOG_WARNING, __func__, 0, __VA_ARGS__)
63 #define info(ctx, ...) log_message(ctx, AM7XXX_LOG_INFO, __func__, 0, __VA_ARGS__)
64 #define debug(ctx, ...) log_message(ctx, AM7XXX_LOG_DEBUG, __func__, 0, __VA_ARGS__)
65 #define trace(ctx, ...) log_message(ctx, AM7XXX_LOG_TRACE, NULL, 0, __VA_ARGS__)
67 #define AM7XXX_QUIRK_NO_POWER_MODE (1 << 0)
68 #define AM7XXX_QUIRK_NO_ZOOM_MODE (1 << 1)
70 struct am7xxx_usb_device_descriptor {
74 uint8_t configuration; /* The bConfigurationValue of the device */
75 uint8_t interface_number; /* The bInterfaceNumber of the device */
79 static const struct am7xxx_usb_device_descriptor supported_devices[] = {
85 .interface_number = 0,
92 .interface_number = 0,
95 .name ="Aiptek PocketCinema T25",
99 .interface_number = 0,
102 .name = "Philips/Sagemcom PicoPix 1020",
104 .product_id = 0x000e,
106 .interface_number = 0,
109 .name = "Philips/Sagemcom PicoPix 2055",
111 .product_id = 0x0016,
113 .interface_number = 0,
114 .quirks = AM7XXX_QUIRK_NO_POWER_MODE | AM7XXX_QUIRK_NO_ZOOM_MODE,
117 .name = "Philips/Sagemcom PicoPix 2330",
119 .product_id = 0x0019,
121 .interface_number = 0,
122 .quirks = AM7XXX_QUIRK_NO_POWER_MODE | AM7XXX_QUIRK_NO_ZOOM_MODE,
126 /* The header size on the wire is known to be always 24 bytes, regardless of
127 * the memory configuration enforced by different architectures or compilers
128 * for struct am7xxx_header
130 #define AM7XXX_HEADER_WIRE_SIZE 24
132 struct _am7xxx_device {
133 libusb_device_handle *usb_device;
134 struct libusb_transfer *transfer;
135 int transfer_completed;
136 uint8_t buffer[AM7XXX_HEADER_WIRE_SIZE];
137 am7xxx_device_info *device_info;
139 const struct am7xxx_usb_device_descriptor *desc;
143 struct _am7xxx_context {
144 libusb_context *usb_context;
146 am7xxx_device *devices_list;
150 AM7XXX_PACKET_TYPE_DEVINFO = 0x01,
151 AM7XXX_PACKET_TYPE_IMAGE = 0x02,
152 AM7XXX_PACKET_TYPE_POWER = 0x04,
153 AM7XXX_PACKET_TYPE_ZOOM = 0x05,
154 } am7xxx_packet_type;
156 struct am7xxx_generic_header {
163 struct am7xxx_devinfo_header {
164 uint32_t native_width;
165 uint32_t native_height;
170 struct am7xxx_image_header {
177 struct am7xxx_power_header {
183 struct am7xxx_zoom_header {
189 * Examples of packet headers:
192 * 02 00 00 00 00 10 3e 10 01 00 00 00 20 03 00 00 e0 01 00 00 53 E8 00 00
195 * 04 00 00 00 00 0c ff ff 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00
198 /* Direction of the communication from the host point of view */
199 #define AM7XXX_DIRECTION_OUT 0 /* host -> device */
200 #define AM7XXX_DIRECTION_IN 1 /* host <- device */
202 struct am7xxx_header {
203 uint32_t packet_type;
205 uint8_t header_data_len;
209 struct am7xxx_generic_header data;
210 struct am7xxx_devinfo_header devinfo;
211 struct am7xxx_image_header image;
212 struct am7xxx_power_header power;
213 struct am7xxx_zoom_header zoom;
219 static void debug_dump_devinfo_header(am7xxx_context *ctx, struct am7xxx_devinfo_header *d)
221 if (ctx == NULL || d == NULL)
224 debug(ctx, "Info header:\n");
225 debug(ctx, "\tnative_width: 0x%08x (%u)\n", d->native_width, d->native_width);
226 debug(ctx, "\tnative_height: 0x%08x (%u)\n", d->native_height, d->native_height);
227 debug(ctx, "\tunknown0: 0x%08x (%u)\n", d->unknown0, d->unknown0);
228 debug(ctx, "\tunknown1: 0x%08x (%u)\n", d->unknown1, d->unknown1);
231 static void debug_dump_image_header(am7xxx_context *ctx, struct am7xxx_image_header *i)
233 if (ctx == NULL || i == NULL)
236 debug(ctx, "Image header:\n");
237 debug(ctx, "\tformat: 0x%08x (%u)\n", i->format, i->format);
238 debug(ctx, "\twidth: 0x%08x (%u)\n", i->width, i->width);
239 debug(ctx, "\theight: 0x%08x (%u)\n", i->height, i->height);
240 debug(ctx, "\timage size: 0x%08x (%u)\n", i->image_size, i->image_size);
243 static void debug_dump_power_header(am7xxx_context *ctx, struct am7xxx_power_header *p)
245 if (ctx == NULL || p == NULL)
248 debug(ctx, "Power header:\n");
249 debug(ctx, "\tbit2: 0x%08x (%u)\n", p->bit2, p->bit2);
250 debug(ctx, "\tbit1: 0x%08x (%u)\n", p->bit1, p->bit1);
251 debug(ctx, "\tbit0: 0x%08x (%u)\n", p->bit0, p->bit0);
254 static void debug_dump_zoom_header(am7xxx_context *ctx, struct am7xxx_zoom_header *z)
256 if (ctx == NULL || z == NULL)
259 debug(ctx, "Zoom header:\n");
260 debug(ctx, "\tbit1: 0x%08x (%u)\n", z->bit1, z->bit1);
261 debug(ctx, "\tbit0: 0x%08x (%u)\n", z->bit0, z->bit0);
264 static void debug_dump_header(am7xxx_context *ctx, struct am7xxx_header *h)
266 if (ctx == NULL || h == NULL)
269 debug(ctx, "BEGIN\n");
270 debug(ctx, "packet_type: 0x%08x (%u)\n", h->packet_type, h->packet_type);
271 debug(ctx, "direction: 0x%02hhx (%hhu) (%s)\n", h->direction, h->direction,
272 h->direction == AM7XXX_DIRECTION_IN ? "IN" :
273 h->direction == AM7XXX_DIRECTION_OUT ? "OUT" :
275 debug(ctx, "header_data_len: 0x%02hhx (%hhu)\n", h->header_data_len, h->header_data_len);
276 debug(ctx, "unknown2: 0x%02hhx (%hhu)\n", h->unknown2, h->unknown2);
277 debug(ctx, "unknown3: 0x%02hhx (%hhu)\n", h->unknown3, h->unknown3);
279 switch(h->packet_type) {
280 case AM7XXX_PACKET_TYPE_DEVINFO:
281 debug_dump_devinfo_header(ctx, &(h->header_data.devinfo));
284 case AM7XXX_PACKET_TYPE_IMAGE:
285 debug_dump_image_header(ctx, &(h->header_data.image));
288 case AM7XXX_PACKET_TYPE_POWER:
289 debug_dump_power_header(ctx, &(h->header_data.power));
292 case AM7XXX_PACKET_TYPE_ZOOM:
293 debug_dump_zoom_header(ctx, &(h->header_data.zoom));
297 debug(ctx, "Packet type not supported!\n");
300 debug(ctx, "END\n\n");
303 static inline unsigned int in_80chars(unsigned int i)
305 /* The 3 below is the length of "xx " where xx is the hex string
306 * representation of a byte */
307 return ((i+1) % (80/3));
310 static void trace_dump_buffer(am7xxx_context *ctx, const char *message,
311 uint8_t *buffer, unsigned int len)
315 if (ctx == NULL || buffer == NULL || len == 0)
320 trace(ctx, "%s\n", message);
322 for (i = 0; i < len; i++) {
323 trace(ctx, "%02hhX%c", buffer[i], (in_80chars(i) && (i < len - 1)) ? ' ' : '\n');
328 static void debug_dump_header(am7xxx_context *ctx, struct am7xxx_header *h)
334 static void trace_dump_buffer(am7xxx_context *ctx, const char *message,
335 uint8_t *buffer, unsigned int len)
344 static int read_data(am7xxx_device *dev, uint8_t *buffer, unsigned int len)
349 ret = libusb_bulk_transfer(dev->usb_device, 0x81, buffer, len, &transferred, 0);
350 if (ret != 0 || (unsigned int)transferred != len) {
351 error(dev->ctx, "ret: %d\ttransferred: %d (expected %u)\n",
352 ret, transferred, len);
356 trace_dump_buffer(dev->ctx, "<-- received", buffer, len);
361 static int send_data(am7xxx_device *dev, uint8_t *buffer, unsigned int len)
366 trace_dump_buffer(dev->ctx, "sending -->", buffer, len);
368 ret = libusb_bulk_transfer(dev->usb_device, 0x1, buffer, len, &transferred, 0);
369 if (ret != 0 || (unsigned int)transferred != len) {
370 error(dev->ctx, "ret: %d\ttransferred: %d (expected %u)\n",
371 ret, transferred, len);
378 static void send_data_async_complete_cb(struct libusb_transfer *transfer)
380 am7xxx_device *dev = (am7xxx_device *)(transfer->user_data);
381 int *completed = &(dev->transfer_completed);
382 int transferred = transfer->actual_length;
385 if (transferred != transfer->length) {
386 error(dev->ctx, "transferred: %d (expected %u)\n",
387 transferred, transfer->length);
390 switch (transfer->status) {
391 case LIBUSB_TRANSFER_COMPLETED:
394 case LIBUSB_TRANSFER_TIMED_OUT:
395 ret = LIBUSB_ERROR_TIMEOUT;
397 case LIBUSB_TRANSFER_STALL:
398 ret = LIBUSB_ERROR_PIPE;
400 case LIBUSB_TRANSFER_OVERFLOW:
401 ret = LIBUSB_ERROR_OVERFLOW;
403 case LIBUSB_TRANSFER_NO_DEVICE:
404 ret = LIBUSB_ERROR_NO_DEVICE;
406 case LIBUSB_TRANSFER_ERROR:
407 case LIBUSB_TRANSFER_CANCELLED:
408 ret = LIBUSB_ERROR_IO;
411 error(dev->ctx, "unrecognised status code %d", transfer->status);
412 ret = LIBUSB_ERROR_OTHER;
416 error(dev->ctx, "libusb transfer failed: %s",
417 libusb_error_name(ret));
419 libusb_free_transfer(transfer);
425 static inline void wait_for_trasfer_completed(am7xxx_device *dev)
427 while (!dev->transfer_completed) {
428 int ret = libusb_handle_events_completed(dev->ctx->usb_context,
429 &(dev->transfer_completed));
431 if (ret == LIBUSB_ERROR_INTERRUPTED)
433 error(dev->ctx, "libusb_handle_events failed: %s, cancelling transfer and retrying",
434 libusb_error_name(ret));
435 libusb_cancel_transfer(dev->transfer);
441 static int send_data_async(am7xxx_device *dev, uint8_t *buffer, unsigned int len)
444 uint8_t *transfer_buffer;
446 dev->transfer = libusb_alloc_transfer(0);
447 if (dev->transfer == NULL) {
448 error(dev->ctx, "cannot allocate transfer (%s)\n",
453 /* Make a copy of the buffer so the caller can safely reuse it just
454 * after libusb_submit_transfer() has returned. This technique
455 * requires more allocations than a proper double-buffering approach
456 * but it takes a lot less code. */
457 transfer_buffer = malloc(len);
458 if (transfer_buffer == NULL) {
459 error(dev->ctx, "cannot allocate transfer buffer (%s)\n",
464 memcpy(transfer_buffer, buffer, len);
466 dev->transfer->flags |= LIBUSB_TRANSFER_FREE_BUFFER;
467 libusb_fill_bulk_transfer(dev->transfer, dev->usb_device, 0x1,
468 transfer_buffer, len,
469 send_data_async_complete_cb, dev, 0);
471 /* wait for the previous transfer to complete */
472 wait_for_trasfer_completed(dev);
474 trace_dump_buffer(dev->ctx, "sending -->", buffer, len);
476 dev->transfer_completed = 0;
477 ret = libusb_submit_transfer(dev->transfer);
484 libusb_free_transfer(dev->transfer);
485 dev->transfer = NULL;
489 static void serialize_header(struct am7xxx_header *h, uint8_t *buffer)
491 uint8_t **buffer_iterator = &buffer;
493 put_le32(h->packet_type, buffer_iterator);
494 put_8(h->direction, buffer_iterator);
495 put_8(h->header_data_len, buffer_iterator);
496 put_8(h->unknown2, buffer_iterator);
497 put_8(h->unknown3, buffer_iterator);
498 put_le32(h->header_data.data.field0, buffer_iterator);
499 put_le32(h->header_data.data.field1, buffer_iterator);
500 put_le32(h->header_data.data.field2, buffer_iterator);
501 put_le32(h->header_data.data.field3, buffer_iterator);
504 static void unserialize_header(uint8_t *buffer, struct am7xxx_header *h)
506 uint8_t **buffer_iterator = &buffer;
508 h->packet_type = get_le32(buffer_iterator);
509 h->direction = get_8(buffer_iterator);
510 h->header_data_len = get_8(buffer_iterator);
511 h->unknown2 = get_8(buffer_iterator);
512 h->unknown3 = get_8(buffer_iterator);
513 h->header_data.data.field0 = get_le32(buffer_iterator);
514 h->header_data.data.field1 = get_le32(buffer_iterator);
515 h->header_data.data.field2 = get_le32(buffer_iterator);
516 h->header_data.data.field3 = get_le32(buffer_iterator);
519 static int read_header(am7xxx_device *dev, struct am7xxx_header *h)
523 ret = read_data(dev, dev->buffer, AM7XXX_HEADER_WIRE_SIZE);
527 unserialize_header(dev->buffer, h);
529 if (h->direction == AM7XXX_DIRECTION_IN) {
533 "Expected an AM7XXX_DIRECTION_IN packet, got one with direction = %d. Weird!\n",
538 debug_dump_header(dev->ctx, h);
544 static int send_header(am7xxx_device *dev, struct am7xxx_header *h)
548 debug_dump_header(dev->ctx, h);
550 /* For symmetry with read_header() we should check here for
551 * h->direction == AM7XXX_DIRECTION_OUT but we just ensure that in all
552 * the callers and save some cycles here.
555 serialize_header(h, dev->buffer);
557 ret = send_data(dev, dev->buffer, AM7XXX_HEADER_WIRE_SIZE);
559 error(dev->ctx, "failed to send data\n");
564 /* When level == AM7XXX_LOG_FATAL do not check the log_level from the context
565 * and print the message unconditionally, this makes it possible to print
566 * fatal messages even early on initialization, before the context has been
568 static void log_message(am7xxx_context *ctx,
570 const char *function,
577 if (level == AM7XXX_LOG_FATAL || (ctx && level <= ctx->log_level)) {
579 fprintf(stderr, "%s", function);
581 fprintf(stderr, "[%d]", line);
582 fprintf(stderr, ": ");
586 vfprintf(stderr, fmt, ap);
593 static am7xxx_device *add_new_device(am7xxx_context *ctx,
594 const struct am7xxx_usb_device_descriptor *desc)
596 am7xxx_device **devices_list;
597 am7xxx_device *new_device;
600 fatal("context must not be NULL!\n");
604 new_device = malloc(sizeof(*new_device));
605 if (new_device == NULL) {
606 fatal("cannot allocate a new device (%s)\n", strerror(errno));
609 memset(new_device, 0, sizeof(*new_device));
611 new_device->ctx = ctx;
612 new_device->desc = desc;
613 new_device->transfer_completed = 1;
615 devices_list = &(ctx->devices_list);
617 if (*devices_list == NULL) {
618 *devices_list = new_device;
620 am7xxx_device *prev = *devices_list;
623 prev->next = new_device;
628 static am7xxx_device *find_device(am7xxx_context *ctx,
629 unsigned int device_index)
632 am7xxx_device *current;
635 fatal("context must not be NULL!\n");
639 current = ctx->devices_list;
640 while (current && i++ < device_index)
641 current = current->next;
647 SCAN_OP_BUILD_DEVLIST,
652 * This is where the central logic of multi-device support is.
654 * When 'op' == SCAN_OP_BUILD_DEVLIST the parameters 'open_device_index' and
655 * 'dev' are ignored; the function returns 0 on success and a negative value
658 * When 'op' == SCAN_OP_OPEN_DEVICE the function opens the supported USB
659 * device with index 'open_device_index' and returns the correspondent
660 * am7xxx_device in the 'dev' parameter; the function returns 0 on success,
661 * 1 if the device was already open and a negative value on error.
664 * if scan_devices() fails when called with 'op' == SCAN_OP_BUILD_DEVLIST,
665 * the caller might want to call am7xxx_shutdown() in order to remove
666 * devices possibly added before the failure.
668 static int scan_devices(am7xxx_context *ctx, scan_op op,
669 unsigned int open_device_index, am7xxx_device **dev)
672 libusb_device** list;
673 unsigned int current_index;
678 fatal("context must not be NULL!\n");
681 if (op == SCAN_OP_BUILD_DEVLIST && ctx->devices_list != NULL) {
682 error(ctx, "device scan done already? Abort!\n");
686 num_devices = libusb_get_device_list(ctx->usb_context, &list);
687 if (num_devices < 0) {
693 for (i = 0; i < num_devices; i++) {
694 struct libusb_device_descriptor desc;
697 ret = libusb_get_device_descriptor(list[i], &desc);
701 for (j = 0; j < ARRAY_SIZE(supported_devices); j++) {
702 if (desc.idVendor == supported_devices[j].vendor_id &&
703 desc.idProduct == supported_devices[j].product_id) {
705 if (op == SCAN_OP_BUILD_DEVLIST) {
706 am7xxx_device *new_device;
707 info(ctx, "am7xxx device found, index: %d, name: %s\n",
709 supported_devices[j].name);
710 new_device = add_new_device(ctx, &supported_devices[j]);
711 if (new_device == NULL) {
712 /* XXX, the caller may want
713 * to call am7xxx_shutdown() if
714 * we fail here, as we may have
715 * added some devices already
717 debug(ctx, "Cannot create a new device\n");
721 } else if (op == SCAN_OP_OPEN_DEVICE &&
722 current_index == open_device_index) {
724 *dev = find_device(ctx, open_device_index);
730 /* the usb device has already been opened */
731 if ((*dev)->usb_device) {
732 debug(ctx, "(*dev)->usb_device already set\n");
737 ret = libusb_open(list[i], &((*dev)->usb_device));
739 debug(ctx, "libusb_open failed\n");
743 /* XXX, the device is now open, if any
744 * of the calls below fail we need to
745 * close it again before bailing out.
748 ret = libusb_set_configuration((*dev)->usb_device,
749 (*dev)->desc->configuration);
751 debug(ctx, "libusb_set_configuration failed\n");
752 debug(ctx, "Cannot set configuration %hhu\n",
753 (*dev)->desc->configuration);
754 goto out_libusb_close;
757 ret = libusb_claim_interface((*dev)->usb_device,
758 (*dev)->desc->interface_number);
760 debug(ctx, "libusb_claim_interface failed\n");
761 debug(ctx, "Cannot claim interface %hhu\n",
762 (*dev)->desc->interface_number);
764 libusb_close((*dev)->usb_device);
765 (*dev)->usb_device = NULL;
776 /* if we made it up to here we didn't find any device to open */
777 if (op == SCAN_OP_OPEN_DEVICE) {
778 error(ctx, "Cannot find any device to open\n");
783 /* everything went fine when building the device list */
786 libusb_free_device_list(list, 1);
792 AM7XXX_PUBLIC int am7xxx_init(am7xxx_context **ctx)
796 *ctx = malloc(sizeof(**ctx));
798 fatal("cannot allocate the context (%s)\n", strerror(errno));
802 memset(*ctx, 0, sizeof(**ctx));
804 /* Set the highest log level during initialization */
805 (*ctx)->log_level = AM7XXX_LOG_TRACE;
807 ret = libusb_init(&((*ctx)->usb_context));
809 goto out_free_context;
811 libusb_set_debug((*ctx)->usb_context, LIBUSB_LOG_LEVEL_INFO);
813 ret = scan_devices(*ctx, SCAN_OP_BUILD_DEVLIST , 0, NULL);
815 error(*ctx, "scan_devices() failed\n");
816 am7xxx_shutdown(*ctx);
820 /* Set a quieter log level as default for normal operation */
821 (*ctx)->log_level = AM7XXX_LOG_ERROR;
831 AM7XXX_PUBLIC void am7xxx_shutdown(am7xxx_context *ctx)
833 am7xxx_device *current;
836 fatal("context must not be NULL!\n");
840 current = ctx->devices_list;
842 am7xxx_device *next = current->next;
843 am7xxx_close_device(current);
844 free(current->device_info);
849 libusb_exit(ctx->usb_context);
854 AM7XXX_PUBLIC void am7xxx_set_log_level(am7xxx_context *ctx, am7xxx_log_level log_level)
856 ctx->log_level = log_level;
859 AM7XXX_PUBLIC int am7xxx_open_device(am7xxx_context *ctx, am7xxx_device **dev,
860 unsigned int device_index)
865 fatal("context must not be NULL!\n");
869 ret = scan_devices(ctx, SCAN_OP_OPEN_DEVICE, device_index, dev);
873 } else if (ret > 0) {
874 warning(ctx, "device %d already open\n", device_index);
880 /* Philips/Sagemcom PicoPix projectors require that the DEVINFO packet
881 * is the first one to be sent to the device in order for it to
882 * successfully return the correct device information.
884 * So, if there is not a cached version of it (from a previous open),
885 * we ask for device info at open time,
887 if ((*dev)->device_info == NULL) {
888 ret = am7xxx_get_device_info(*dev, NULL);
890 error(ctx, "cannot get device info\n");
897 AM7XXX_PUBLIC int am7xxx_close_device(am7xxx_device *dev)
900 fatal("dev must not be NULL!\n");
903 if (dev->usb_device) {
904 wait_for_trasfer_completed(dev);
905 libusb_release_interface(dev->usb_device, dev->desc->interface_number);
906 libusb_close(dev->usb_device);
907 dev->usb_device = NULL;
912 AM7XXX_PUBLIC int am7xxx_get_device_info(am7xxx_device *dev,
913 am7xxx_device_info *device_info)
916 struct am7xxx_header h = {
917 .packet_type = AM7XXX_PACKET_TYPE_DEVINFO,
918 .direction = AM7XXX_DIRECTION_OUT,
919 .header_data_len = 0x00,
932 if (dev->device_info) {
933 memcpy(device_info, dev->device_info, sizeof(*device_info));
937 ret = send_header(dev, &h);
941 ret = read_header(dev, &h);
945 if (h.packet_type != AM7XXX_PACKET_TYPE_DEVINFO) {
946 error(dev->ctx, "expected packet type: %d, got %d instead!\n",
947 AM7XXX_PACKET_TYPE_DEVINFO, h.packet_type);
952 dev->device_info = malloc(sizeof(*dev->device_info));
953 if (dev->device_info == NULL) {
954 error(dev->ctx, "cannot allocate a device info (%s)\n",
958 memset(dev->device_info, 0, sizeof(*dev->device_info));
960 dev->device_info->native_width = h.header_data.devinfo.native_width;
961 dev->device_info->native_height = h.header_data.devinfo.native_height;
963 /* No reason to expose these in the public API until we know what they mean */
964 dev->device_info->unknown0 = h.header_data.devinfo.unknown0;
965 dev->device_info->unknown1 = h.header_data.devinfo.unknown1;
971 AM7XXX_PUBLIC int am7xxx_calc_scaled_image_dimensions(am7xxx_device *dev,
972 unsigned int upscale,
973 unsigned int original_width,
974 unsigned int original_height,
975 unsigned int *scaled_width,
976 unsigned int *scaled_height)
979 am7xxx_device_info device_info;
984 ret = am7xxx_get_device_info(dev, &device_info);
986 error(dev->ctx, "cannot get device info\n");
991 * Check if we need to rescale; if the input image fits the native
992 * dimensions there is no need to, unless we want to upscale.
995 original_width <= device_info.native_width &&
996 original_height <= device_info.native_height ) {
997 debug(dev->ctx, "CASE 0, no rescaling, the original image fits already\n");
998 *scaled_width = original_width;
999 *scaled_height = original_height;
1003 /* Input dimensions relative to the device native dimensions */
1004 width_ratio = (float)original_width / device_info.native_width;
1005 height_ratio = (float)original_height / device_info.native_height;
1007 if (width_ratio > height_ratio) {
1009 * The input is proportionally "wider" than the device viewport
1010 * so its height needs to be adjusted
1012 debug(dev->ctx, "CASE 1, original image wider, adjust the scaled height\n");
1013 *scaled_width = device_info.native_width;
1014 *scaled_height = (unsigned int)lroundf(original_height / width_ratio);
1015 } else if (width_ratio < height_ratio) {
1017 * The input is proportionally "taller" than the device viewport
1018 * so its width needs to be adjusted
1020 debug(dev->ctx, "CASE 2 original image taller, adjust the scaled width\n");
1021 *scaled_width = (unsigned int)lroundf(original_width / height_ratio);
1022 *scaled_height = device_info.native_height;
1024 debug(dev->ctx, "CASE 3, just rescale, same aspect ratio already\n");
1025 *scaled_width = device_info.native_width;
1026 *scaled_height = device_info.native_height;
1028 debug(dev->ctx, "scaled dimensions: %dx%d\n", *scaled_width, *scaled_height);
1033 AM7XXX_PUBLIC int am7xxx_send_image(am7xxx_device *dev,
1034 am7xxx_image_format format,
1036 unsigned int height,
1038 unsigned int image_size)
1041 struct am7xxx_header h = {
1042 .packet_type = AM7XXX_PACKET_TYPE_IMAGE,
1043 .direction = AM7XXX_DIRECTION_OUT,
1044 .header_data_len = sizeof(struct am7xxx_image_header),
1052 .image_size = image_size,
1057 ret = send_header(dev, &h);
1061 if (image == NULL || image_size == 0) {
1062 warning(dev->ctx, "Not sending any data, check the 'image' or 'image_size' parameters\n");
1066 return send_data(dev, image, image_size);
1069 AM7XXX_PUBLIC int am7xxx_send_image_async(am7xxx_device *dev,
1070 am7xxx_image_format format,
1072 unsigned int height,
1074 unsigned int image_size)
1077 struct am7xxx_header h = {
1078 .packet_type = AM7XXX_PACKET_TYPE_IMAGE,
1079 .direction = AM7XXX_DIRECTION_OUT,
1080 .header_data_len = sizeof(struct am7xxx_image_header),
1088 .image_size = image_size,
1093 ret = send_header(dev, &h);
1097 if (image == NULL || image_size == 0) {
1098 warning(dev->ctx, "Not sending any data, check the 'image' or 'image_size' parameters\n");
1102 return send_data_async(dev, image, image_size);
1105 AM7XXX_PUBLIC int am7xxx_set_power_mode(am7xxx_device *dev, am7xxx_power_mode power)
1108 struct am7xxx_header h = {
1109 .packet_type = AM7XXX_PACKET_TYPE_POWER,
1110 .direction = AM7XXX_DIRECTION_OUT,
1111 .header_data_len = sizeof(struct am7xxx_power_header),
1116 if (dev->desc->quirks & AM7XXX_QUIRK_NO_POWER_MODE) {
1118 "setting power mode is unsupported on this device\n");
1123 case AM7XXX_POWER_OFF:
1124 h.header_data.power.bit2 = 0;
1125 h.header_data.power.bit1 = 0;
1126 h.header_data.power.bit0 = 0;
1129 case AM7XXX_POWER_LOW:
1130 h.header_data.power.bit2 = 0;
1131 h.header_data.power.bit1 = 0;
1132 h.header_data.power.bit0 = 1;
1135 case AM7XXX_POWER_MIDDLE:
1136 h.header_data.power.bit2 = 0;
1137 h.header_data.power.bit1 = 1;
1138 h.header_data.power.bit0 = 0;
1141 case AM7XXX_POWER_HIGH:
1142 h.header_data.power.bit2 = 0;
1143 h.header_data.power.bit1 = 1;
1144 h.header_data.power.bit0 = 1;
1147 case AM7XXX_POWER_TURBO:
1148 h.header_data.power.bit2 = 1;
1149 h.header_data.power.bit1 = 0;
1150 h.header_data.power.bit0 = 0;
1154 error(dev->ctx, "Unsupported power mode.\n");
1158 ret = send_header(dev, &h);
1165 AM7XXX_PUBLIC int am7xxx_set_zoom_mode(am7xxx_device *dev, am7xxx_zoom_mode zoom)
1168 struct am7xxx_header h = {
1169 .packet_type = AM7XXX_PACKET_TYPE_ZOOM,
1170 .direction = AM7XXX_DIRECTION_OUT,
1171 .header_data_len = sizeof(struct am7xxx_zoom_header),
1176 if (dev->desc->quirks & AM7XXX_QUIRK_NO_ZOOM_MODE) {
1178 "setting zoom mode is unsupported on this device\n");
1183 case AM7XXX_ZOOM_ORIGINAL:
1184 h.header_data.zoom.bit1 = 0;
1185 h.header_data.zoom.bit0 = 0;
1189 h.header_data.zoom.bit1 = 0;
1190 h.header_data.zoom.bit0 = 1;
1193 case AM7XXX_ZOOM_H_V:
1194 h.header_data.zoom.bit1 = 1;
1195 h.header_data.zoom.bit0 = 0;
1198 case AM7XXX_ZOOM_TEST:
1199 h.header_data.zoom.bit1 = 1;
1200 h.header_data.zoom.bit0 = 1;
1204 error(dev->ctx, "Unsupported zoom mode.\n");
1208 ret = send_header(dev, &h);