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1/*
2 * Copyright (C) 2011 Red Hat, Inc.
3 *
4 * CCID Device emulation
5 *
6 * Written by Alon Levy, with contributions from Robert Relyea.
7 *
93148aa5 8 * Based on usb-serial.c, see its copyright and attributions below.
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9 *
10 * This work is licensed under the terms of the GNU GPL, version 2.1 or later.
11 * See the COPYING file in the top-level directory.
12 * ------- (original copyright & attribution for usb-serial.c below) --------
13 * Copyright (c) 2006 CodeSourcery.
14 * Copyright (c) 2008 Samuel Thibault <[email protected]>
15 * Written by Paul Brook, reused for FTDI by Samuel Thibault,
16 */
17
18/*
19 * References:
20 *
21 * CCID Specification Revision 1.1 April 22nd 2005
22 * "Universal Serial Bus, Device Class: Smart Card"
23 * Specification for Integrated Circuit(s) Cards Interface Devices
24 *
62a2ab6a 25 * Endianness note: from the spec (1.3)
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26 * "Fields that are larger than a byte are stored in little endian"
27 *
28 * KNOWN BUGS
29 * 1. remove/insert can sometimes result in removed state instead of inserted.
30 * This is a result of the following:
31 * symptom: dmesg shows ERMOTEIO (-121), pcscd shows -99. This can happen
32 * when a short packet is sent, as seen in uhci-usb.c, resulting from a urb
33 * from the guest requesting SPD and us returning a smaller packet.
34 * Not sure which messages trigger this.
35 */
36
e532b2e0 37#include "qemu/osdep.h"
246e195b 38#include "qemu/units.h"
da34e65c 39#include "qapi/error.h"
36707144 40#include "qemu-common.h"
1de7afc9 41#include "qemu/error-report.h"
0b8fa32f 42#include "qemu/module.h"
f1ae32a1 43#include "hw/usb.h"
d6454270 44#include "migration/vmstate.h"
463581a8 45#include "desc.h"
36707144 46
47b43a1f 47#include "ccid.h"
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48
49#define DPRINTF(s, lvl, fmt, ...) \
50do { \
51 if (lvl <= s->debug) { \
52 printf("usb-ccid: " fmt , ## __VA_ARGS__); \
53 } \
54} while (0)
55
56#define D_WARN 1
57#define D_INFO 2
58#define D_MORE_INFO 3
59#define D_VERBOSE 4
60
61#define CCID_DEV_NAME "usb-ccid"
61b4887b 62#define USB_CCID_DEV(obj) OBJECT_CHECK(USBCCIDState, (obj), CCID_DEV_NAME)
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63/*
64 * The two options for variable sized buffers:
65 * make them constant size, for large enough constant,
66 * or handle the migration complexity - VMState doesn't handle this case.
67 * sizes are expected never to be exceeded, unless guest misbehaves.
68 */
246e195b 69#define BULK_OUT_DATA_SIZE (64 * KiB)
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70#define PENDING_ANSWERS_NUM 128
71
72#define BULK_IN_BUF_SIZE 384
73#define BULK_IN_PENDING_NUM 8
74
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75#define CCID_MAX_PACKET_SIZE 64
76
77#define CCID_CONTROL_ABORT 0x1
78#define CCID_CONTROL_GET_CLOCK_FREQUENCIES 0x2
79#define CCID_CONTROL_GET_DATA_RATES 0x3
80
81#define CCID_PRODUCT_DESCRIPTION "QEMU USB CCID"
93bfef4c 82#define CCID_VENDOR_DESCRIPTION "QEMU"
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83#define CCID_INTERFACE_NAME "CCID Interface"
84#define CCID_SERIAL_NUMBER_STRING "1"
85/*
86 * Using Gemplus Vendor and Product id
87 * Effect on various drivers:
88 * usbccid.sys (winxp, others untested) is a class driver so it doesn't care.
89 * linux has a number of class drivers, but openct filters based on
90 * vendor/product (/etc/openct.conf under fedora), hence Gemplus.
91 */
92#define CCID_VENDOR_ID 0x08e6
93#define CCID_PRODUCT_ID 0x4433
94#define CCID_DEVICE_VERSION 0x0000
95
96/*
97 * BULK_OUT messages from PC to Reader
98 * Defined in CCID Rev 1.1 6.1 (page 26)
99 */
100#define CCID_MESSAGE_TYPE_PC_to_RDR_IccPowerOn 0x62
101#define CCID_MESSAGE_TYPE_PC_to_RDR_IccPowerOff 0x63
102#define CCID_MESSAGE_TYPE_PC_to_RDR_GetSlotStatus 0x65
103#define CCID_MESSAGE_TYPE_PC_to_RDR_XfrBlock 0x6f
104#define CCID_MESSAGE_TYPE_PC_to_RDR_GetParameters 0x6c
105#define CCID_MESSAGE_TYPE_PC_to_RDR_ResetParameters 0x6d
106#define CCID_MESSAGE_TYPE_PC_to_RDR_SetParameters 0x61
107#define CCID_MESSAGE_TYPE_PC_to_RDR_Escape 0x6b
108#define CCID_MESSAGE_TYPE_PC_to_RDR_IccClock 0x6e
109#define CCID_MESSAGE_TYPE_PC_to_RDR_T0APDU 0x6a
110#define CCID_MESSAGE_TYPE_PC_to_RDR_Secure 0x69
111#define CCID_MESSAGE_TYPE_PC_to_RDR_Mechanical 0x71
112#define CCID_MESSAGE_TYPE_PC_to_RDR_Abort 0x72
113#define CCID_MESSAGE_TYPE_PC_to_RDR_SetDataRateAndClockFrequency 0x73
114
115/*
116 * BULK_IN messages from Reader to PC
117 * Defined in CCID Rev 1.1 6.2 (page 48)
118 */
119#define CCID_MESSAGE_TYPE_RDR_to_PC_DataBlock 0x80
120#define CCID_MESSAGE_TYPE_RDR_to_PC_SlotStatus 0x81
121#define CCID_MESSAGE_TYPE_RDR_to_PC_Parameters 0x82
122#define CCID_MESSAGE_TYPE_RDR_to_PC_Escape 0x83
123#define CCID_MESSAGE_TYPE_RDR_to_PC_DataRateAndClockFrequency 0x84
124
125/*
126 * INTERRUPT_IN messages from Reader to PC
127 * Defined in CCID Rev 1.1 6.3 (page 56)
128 */
129#define CCID_MESSAGE_TYPE_RDR_to_PC_NotifySlotChange 0x50
130#define CCID_MESSAGE_TYPE_RDR_to_PC_HardwareError 0x51
131
132/*
133 * Endpoints for CCID - addresses are up to us to decide.
134 * To support slot insertion and removal we must have an interrupt in ep
135 * in addition we need a bulk in and bulk out ep
136 * 5.2, page 20
137 */
138#define CCID_INT_IN_EP 1
139#define CCID_BULK_IN_EP 2
140#define CCID_BULK_OUT_EP 3
141
142/* bmSlotICCState masks */
143#define SLOT_0_STATE_MASK 1
144#define SLOT_0_CHANGED_MASK 2
145
146/* Status codes that go in bStatus (see 6.2.6) */
147enum {
148 ICC_STATUS_PRESENT_ACTIVE = 0,
149 ICC_STATUS_PRESENT_INACTIVE,
150 ICC_STATUS_NOT_PRESENT
151};
152
153enum {
154 COMMAND_STATUS_NO_ERROR = 0,
155 COMMAND_STATUS_FAILED,
156 COMMAND_STATUS_TIME_EXTENSION_REQUIRED
157};
158
159/* Error codes that go in bError (see 6.2.6) */
160enum {
161 ERROR_CMD_NOT_SUPPORTED = 0,
162 ERROR_CMD_ABORTED = -1,
163 ERROR_ICC_MUTE = -2,
164 ERROR_XFR_PARITY_ERROR = -3,
165 ERROR_XFR_OVERRUN = -4,
166 ERROR_HW_ERROR = -5,
167};
168
169/* 6.2.6 RDR_to_PC_SlotStatus definitions */
170enum {
171 CLOCK_STATUS_RUNNING = 0,
172 /*
173 * 0 - Clock Running, 1 - Clock stopped in State L, 2 - H,
62a2ab6a 174 * 3 - unknown state. rest are RFU
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175 */
176};
177
541dc0d4 178typedef struct QEMU_PACKED CCID_Header {
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179 uint8_t bMessageType;
180 uint32_t dwLength;
181 uint8_t bSlot;
182 uint8_t bSeq;
183} CCID_Header;
184
541dc0d4 185typedef struct QEMU_PACKED CCID_BULK_IN {
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186 CCID_Header hdr;
187 uint8_t bStatus; /* Only used in BULK_IN */
188 uint8_t bError; /* Only used in BULK_IN */
189} CCID_BULK_IN;
190
541dc0d4 191typedef struct QEMU_PACKED CCID_SlotStatus {
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192 CCID_BULK_IN b;
193 uint8_t bClockStatus;
194} CCID_SlotStatus;
195
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196typedef struct QEMU_PACKED CCID_T0ProtocolDataStructure {
197 uint8_t bmFindexDindex;
198 uint8_t bmTCCKST0;
199 uint8_t bGuardTimeT0;
200 uint8_t bWaitingIntegerT0;
201 uint8_t bClockStop;
202} CCID_T0ProtocolDataStructure;
203
204typedef struct QEMU_PACKED CCID_T1ProtocolDataStructure {
205 uint8_t bmFindexDindex;
206 uint8_t bmTCCKST1;
207 uint8_t bGuardTimeT1;
208 uint8_t bWaitingIntegerT1;
209 uint8_t bClockStop;
210 uint8_t bIFSC;
211 uint8_t bNadValue;
212} CCID_T1ProtocolDataStructure;
213
214typedef union CCID_ProtocolDataStructure {
215 CCID_T0ProtocolDataStructure t0;
216 CCID_T1ProtocolDataStructure t1;
217 uint8_t data[7]; /* must be = max(sizeof(t0), sizeof(t1)) */
218} CCID_ProtocolDataStructure;
219
541dc0d4 220typedef struct QEMU_PACKED CCID_Parameter {
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221 CCID_BULK_IN b;
222 uint8_t bProtocolNum;
4942d6c3 223 CCID_ProtocolDataStructure abProtocolDataStructure;
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224} CCID_Parameter;
225
541dc0d4 226typedef struct QEMU_PACKED CCID_DataBlock {
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227 CCID_BULK_IN b;
228 uint8_t bChainParameter;
229 uint8_t abData[0];
230} CCID_DataBlock;
231
232/* 6.1.4 PC_to_RDR_XfrBlock */
541dc0d4 233typedef struct QEMU_PACKED CCID_XferBlock {
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234 CCID_Header hdr;
235 uint8_t bBWI; /* Block Waiting Timeout */
236 uint16_t wLevelParameter; /* XXX currently unused */
237 uint8_t abData[0];
238} CCID_XferBlock;
239
541dc0d4 240typedef struct QEMU_PACKED CCID_IccPowerOn {
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241 CCID_Header hdr;
242 uint8_t bPowerSelect;
243 uint16_t abRFU;
244} CCID_IccPowerOn;
245
541dc0d4 246typedef struct QEMU_PACKED CCID_IccPowerOff {
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247 CCID_Header hdr;
248 uint16_t abRFU;
249} CCID_IccPowerOff;
250
541dc0d4 251typedef struct QEMU_PACKED CCID_SetParameters {
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252 CCID_Header hdr;
253 uint8_t bProtocolNum;
254 uint16_t abRFU;
4942d6c3 255 CCID_ProtocolDataStructure abProtocolDataStructure;
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256} CCID_SetParameters;
257
258typedef struct CCID_Notify_Slot_Change {
259 uint8_t bMessageType; /* CCID_MESSAGE_TYPE_RDR_to_PC_NotifySlotChange */
260 uint8_t bmSlotICCState;
261} CCID_Notify_Slot_Change;
262
263/* used for DataBlock response to XferBlock */
264typedef struct Answer {
265 uint8_t slot;
266 uint8_t seq;
267} Answer;
268
269/* pending BULK_IN messages */
270typedef struct BulkIn {
271 uint8_t data[BULK_IN_BUF_SIZE];
272 uint32_t len;
273 uint32_t pos;
274} BulkIn;
275
6df658f5
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276typedef struct CCIDBus {
277 BusState qbus;
278} CCIDBus;
36707144 279
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280/*
281 * powered - defaults to true, changed by PowerOn/PowerOff messages
282 */
6df658f5 283typedef struct USBCCIDState {
36707144 284 USBDevice dev;
7567b51f 285 USBEndpoint *intr;
86d7e214 286 USBEndpoint *bulk;
6df658f5 287 CCIDBus bus;
36707144 288 CCIDCardState *card;
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289 BulkIn bulk_in_pending[BULK_IN_PENDING_NUM]; /* circular */
290 uint32_t bulk_in_pending_start;
291 uint32_t bulk_in_pending_end; /* first free */
292 uint32_t bulk_in_pending_num;
293 BulkIn *current_bulk_in;
294 uint8_t bulk_out_data[BULK_OUT_DATA_SIZE];
295 uint32_t bulk_out_pos;
296 uint64_t last_answer_error;
297 Answer pending_answers[PENDING_ANSWERS_NUM];
298 uint32_t pending_answers_start;
299 uint32_t pending_answers_end;
300 uint32_t pending_answers_num;
301 uint8_t bError;
302 uint8_t bmCommandStatus;
303 uint8_t bProtocolNum;
4942d6c3 304 CCID_ProtocolDataStructure abProtocolDataStructure;
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305 uint32_t ulProtocolDataStructureSize;
306 uint32_t state_vmstate;
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307 uint8_t bmSlotICCState;
308 uint8_t powered;
309 uint8_t notify_slot_change;
310 uint8_t debug;
6df658f5 311} USBCCIDState;
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312
313/*
314 * CCID Spec chapter 4: CCID uses a standard device descriptor per Chapter 9,
315 * "USB Device Framework", section 9.6.1, in the Universal Serial Bus
316 * Specification.
317 *
318 * This device implemented based on the spec and with an Athena Smart Card
319 * Reader as reference:
320 * 0dc3:1004 Athena Smartcard Solutions, Inc.
321 */
322
97237e0a 323static const uint8_t qemu_ccid_descriptor[] = {
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324 /* Smart Card Device Class Descriptor */
325 0x36, /* u8 bLength; */
326 0x21, /* u8 bDescriptorType; Functional */
327 0x10, 0x01, /* u16 bcdCCID; CCID Specification Release Number. */
328 0x00, /*
329 * u8 bMaxSlotIndex; The index of the highest available
330 * slot on this device. All slots are consecutive starting
331 * at 00h.
332 */
333 0x07, /* u8 bVoltageSupport; 01h - 5.0v, 02h - 3.0, 03 - 1.8 */
334
0ee86bb6
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335 0x01, 0x00, /* u32 dwProtocols; RRRR PPPP. RRRR = 0000h.*/
336 0x00, 0x00, /* PPPP: 0001h = Protocol T=0, 0002h = Protocol T=1 */
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337 /* u32 dwDefaultClock; in kHZ (0x0fa0 is 4 MHz) */
338 0xa0, 0x0f, 0x00, 0x00,
339 /* u32 dwMaximumClock; */
340 0x00, 0x00, 0x01, 0x00,
341 0x00, /* u8 bNumClockSupported; *
342 * 0 means just the default and max. */
343 /* u32 dwDataRate ;bps. 9600 == 00002580h */
344 0x80, 0x25, 0x00, 0x00,
345 /* u32 dwMaxDataRate ; 11520 bps == 0001C200h */
346 0x00, 0xC2, 0x01, 0x00,
347 0x00, /* u8 bNumDataRatesSupported; 00 means all rates between
348 * default and max */
349 /* u32 dwMaxIFSD; *
350 * maximum IFSD supported by CCID for protocol *
351 * T=1 (Maximum seen from various cards) */
352 0xfe, 0x00, 0x00, 0x00,
353 /* u32 dwSyncProtocols; 1 - 2-wire, 2 - 3-wire, 4 - I2C */
354 0x00, 0x00, 0x00, 0x00,
355 /* u32 dwMechanical; 0 - no special characteristics. */
356 0x00, 0x00, 0x00, 0x00,
357 /*
358 * u32 dwFeatures;
359 * 0 - No special characteristics
360 * + 2 Automatic parameter configuration based on ATR data
361 * + 4 Automatic activation of ICC on inserting
362 * + 8 Automatic ICC voltage selection
363 * + 10 Automatic ICC clock frequency change
364 * + 20 Automatic baud rate change
365 * + 40 Automatic parameters negotiation made by the CCID
366 * + 80 automatic PPS made by the CCID
367 * 100 CCID can set ICC in clock stop mode
368 * 200 NAD value other then 00 accepted (T=1 protocol)
369 * + 400 Automatic IFSD exchange as first exchange (T=1)
370 * One of the following only:
371 * + 10000 TPDU level exchanges with CCID
372 * 20000 Short APDU level exchange with CCID
373 * 40000 Short and Extended APDU level exchange with CCID
374 *
c5cd7c87 375 * 100000 USB Wake up signaling supported on card
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376 * insertion and removal. Must set bit 5 in bmAttributes
377 * in Configuration descriptor if 100000 is set.
378 */
c5cd7c87 379 0xfe, 0x04, 0x01, 0x00,
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380 /*
381 * u32 dwMaxCCIDMessageLength; For extended APDU in
382 * [261 + 10 , 65544 + 10]. Otherwise the minimum is
383 * wMaxPacketSize of the Bulk-OUT endpoint
384 */
385 0x12, 0x00, 0x01, 0x00,
386 0xFF, /*
387 * u8 bClassGetResponse; Significant only for CCID that
388 * offers an APDU level for exchanges. Indicates the
389 * default class value used by the CCID when it sends a
390 * Get Response command to perform the transportation of
391 * an APDU by T=0 protocol
392 * FFh indicates that the CCID echos the class of the APDU.
393 */
394 0xFF, /*
395 * u8 bClassEnvelope; EAPDU only. Envelope command for
396 * T=0
397 */
398 0x00, 0x00, /*
399 * u16 wLcdLayout; XXYY Number of lines (XX) and chars per
400 * line for LCD display used for PIN entry. 0000 - no LCD
401 */
402 0x01, /*
403 * u8 bPINSupport; 01h PIN Verification,
404 * 02h PIN Modification
405 */
406 0x01, /* u8 bMaxCCIDBusySlots; */
97237e0a 407};
36707144 408
97237e0a
GH
409enum {
410 STR_MANUFACTURER = 1,
411 STR_PRODUCT,
412 STR_SERIALNUMBER,
413 STR_INTERFACE,
414};
36707144 415
97237e0a 416static const USBDescStrings desc_strings = {
93bfef4c 417 [STR_MANUFACTURER] = "QEMU",
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GH
418 [STR_PRODUCT] = "QEMU USB CCID",
419 [STR_SERIALNUMBER] = "1",
420 [STR_INTERFACE] = "CCID Interface",
421};
422
423static const USBDescIface desc_iface0 = {
424 .bInterfaceNumber = 0,
425 .bNumEndpoints = 3,
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426 .bInterfaceClass = USB_CLASS_CSCID,
427 .bInterfaceSubClass = USB_SUBCLASS_UNDEFINED,
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GH
428 .bInterfaceProtocol = 0x00,
429 .iInterface = STR_INTERFACE,
430 .ndesc = 1,
431 .descs = (USBDescOther[]) {
432 {
433 /* smartcard descriptor */
434 .data = qemu_ccid_descriptor,
435 },
436 },
437 .eps = (USBDescEndpoint[]) {
438 {
439 .bEndpointAddress = USB_DIR_IN | CCID_INT_IN_EP,
440 .bmAttributes = USB_ENDPOINT_XFER_INT,
441 .bInterval = 255,
442 .wMaxPacketSize = 64,
443 },{
444 .bEndpointAddress = USB_DIR_IN | CCID_BULK_IN_EP,
445 .bmAttributes = USB_ENDPOINT_XFER_BULK,
446 .wMaxPacketSize = 64,
447 },{
448 .bEndpointAddress = USB_DIR_OUT | CCID_BULK_OUT_EP,
449 .bmAttributes = USB_ENDPOINT_XFER_BULK,
450 .wMaxPacketSize = 64,
451 },
452 }
453};
454
455static const USBDescDevice desc_device = {
456 .bcdUSB = 0x0110,
457 .bMaxPacketSize0 = 64,
458 .bNumConfigurations = 1,
459 .confs = (USBDescConfig[]) {
460 {
461 .bNumInterfaces = 1,
462 .bConfigurationValue = 1,
bd93976a
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463 .bmAttributes = USB_CFG_ATT_ONE | USB_CFG_ATT_SELFPOWER |
464 USB_CFG_ATT_WAKEUP,
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GH
465 .bMaxPower = 50,
466 .nif = 1,
467 .ifs = &desc_iface0,
468 },
469 },
470};
471
472static const USBDesc desc_ccid = {
473 .id = {
474 .idVendor = CCID_VENDOR_ID,
475 .idProduct = CCID_PRODUCT_ID,
476 .bcdDevice = CCID_DEVICE_VERSION,
477 .iManufacturer = STR_MANUFACTURER,
478 .iProduct = STR_PRODUCT,
479 .iSerialNumber = STR_SERIALNUMBER,
480 },
481 .full = &desc_device,
482 .str = desc_strings,
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483};
484
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485static const uint8_t *ccid_card_get_atr(CCIDCardState *card, uint32_t *len)
486{
487 CCIDCardClass *cc = CCID_CARD_GET_CLASS(card);
4543d43c 488
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489 if (cc->get_atr) {
490 return cc->get_atr(card, len);
491 }
492 return NULL;
493}
494
495static void ccid_card_apdu_from_guest(CCIDCardState *card,
496 const uint8_t *apdu,
497 uint32_t len)
498{
499 CCIDCardClass *cc = CCID_CARD_GET_CLASS(card);
4543d43c 500
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501 if (cc->apdu_from_guest) {
502 cc->apdu_from_guest(card, apdu, len);
503 }
504}
505
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506static bool ccid_has_pending_answers(USBCCIDState *s)
507{
508 return s->pending_answers_num > 0;
509}
510
511static void ccid_clear_pending_answers(USBCCIDState *s)
512{
513 s->pending_answers_num = 0;
514 s->pending_answers_start = 0;
515 s->pending_answers_end = 0;
516}
517
518static void ccid_print_pending_answers(USBCCIDState *s)
519{
520 Answer *answer;
521 int i, count;
522
523 DPRINTF(s, D_VERBOSE, "usb-ccid: pending answers:");
524 if (!ccid_has_pending_answers(s)) {
525 DPRINTF(s, D_VERBOSE, " empty\n");
526 return;
527 }
528 for (i = s->pending_answers_start, count = s->pending_answers_num ;
529 count > 0; count--, i++) {
530 answer = &s->pending_answers[i % PENDING_ANSWERS_NUM];
531 if (count == 1) {
532 DPRINTF(s, D_VERBOSE, "%d:%d\n", answer->slot, answer->seq);
533 } else {
534 DPRINTF(s, D_VERBOSE, "%d:%d,", answer->slot, answer->seq);
535 }
536 }
537}
538
539static void ccid_add_pending_answer(USBCCIDState *s, CCID_Header *hdr)
540{
541 Answer *answer;
542
543 assert(s->pending_answers_num < PENDING_ANSWERS_NUM);
544 s->pending_answers_num++;
545 answer =
546 &s->pending_answers[(s->pending_answers_end++) % PENDING_ANSWERS_NUM];
547 answer->slot = hdr->bSlot;
548 answer->seq = hdr->bSeq;
549 ccid_print_pending_answers(s);
550}
551
552static void ccid_remove_pending_answer(USBCCIDState *s,
553 uint8_t *slot, uint8_t *seq)
554{
555 Answer *answer;
556
557 assert(s->pending_answers_num > 0);
558 s->pending_answers_num--;
559 answer =
560 &s->pending_answers[(s->pending_answers_start++) % PENDING_ANSWERS_NUM];
561 *slot = answer->slot;
562 *seq = answer->seq;
563 ccid_print_pending_answers(s);
564}
565
566static void ccid_bulk_in_clear(USBCCIDState *s)
567{
568 s->bulk_in_pending_start = 0;
569 s->bulk_in_pending_end = 0;
570 s->bulk_in_pending_num = 0;
571}
572
573static void ccid_bulk_in_release(USBCCIDState *s)
574{
575 assert(s->current_bulk_in != NULL);
576 s->current_bulk_in->pos = 0;
577 s->current_bulk_in = NULL;
578}
579
580static void ccid_bulk_in_get(USBCCIDState *s)
581{
582 if (s->current_bulk_in != NULL || s->bulk_in_pending_num == 0) {
583 return;
584 }
585 assert(s->bulk_in_pending_num > 0);
586 s->bulk_in_pending_num--;
587 s->current_bulk_in =
588 &s->bulk_in_pending[(s->bulk_in_pending_start++) % BULK_IN_PENDING_NUM];
589}
590
591static void *ccid_reserve_recv_buf(USBCCIDState *s, uint16_t len)
592{
593 BulkIn *bulk_in;
594
595 DPRINTF(s, D_VERBOSE, "%s: QUEUE: reserve %d bytes\n", __func__, len);
596
597 /* look for an existing element */
598 if (len > BULK_IN_BUF_SIZE) {
599 DPRINTF(s, D_WARN, "usb-ccid.c: %s: len larger then max (%d>%d). "
600 "discarding message.\n",
601 __func__, len, BULK_IN_BUF_SIZE);
602 return NULL;
603 }
604 if (s->bulk_in_pending_num >= BULK_IN_PENDING_NUM) {
605 DPRINTF(s, D_WARN, "usb-ccid.c: %s: No free bulk_in buffers. "
606 "discarding message.\n", __func__);
607 return NULL;
608 }
609 bulk_in =
610 &s->bulk_in_pending[(s->bulk_in_pending_end++) % BULK_IN_PENDING_NUM];
611 s->bulk_in_pending_num++;
612 bulk_in->len = len;
613 return bulk_in->data;
614}
615
616static void ccid_reset(USBCCIDState *s)
617{
618 ccid_bulk_in_clear(s);
619 ccid_clear_pending_answers(s);
620}
621
622static void ccid_detach(USBCCIDState *s)
623{
624 ccid_reset(s);
625}
626
627static void ccid_handle_reset(USBDevice *dev)
628{
61b4887b 629 USBCCIDState *s = USB_CCID_DEV(dev);
36707144
AL
630
631 DPRINTF(s, 1, "Reset\n");
632
633 ccid_reset(s);
634}
635
7e1ac5ab
AL
636static const char *ccid_control_to_str(USBCCIDState *s, int request)
637{
638 switch (request) {
639 /* generic - should be factored out if there are other debugees */
640 case DeviceOutRequest | USB_REQ_SET_ADDRESS:
641 return "(generic) set address";
642 case DeviceRequest | USB_REQ_GET_DESCRIPTOR:
643 return "(generic) get descriptor";
644 case DeviceRequest | USB_REQ_GET_CONFIGURATION:
645 return "(generic) get configuration";
646 case DeviceOutRequest | USB_REQ_SET_CONFIGURATION:
647 return "(generic) set configuration";
648 case DeviceRequest | USB_REQ_GET_STATUS:
649 return "(generic) get status";
650 case DeviceOutRequest | USB_REQ_CLEAR_FEATURE:
651 return "(generic) clear feature";
652 case DeviceOutRequest | USB_REQ_SET_FEATURE:
653 return "(generic) set_feature";
654 case InterfaceRequest | USB_REQ_GET_INTERFACE:
655 return "(generic) get interface";
656 case InterfaceOutRequest | USB_REQ_SET_INTERFACE:
657 return "(generic) set interface";
658 /* class requests */
659 case ClassInterfaceOutRequest | CCID_CONTROL_ABORT:
660 return "ABORT";
661 case ClassInterfaceRequest | CCID_CONTROL_GET_CLOCK_FREQUENCIES:
662 return "GET_CLOCK_FREQUENCIES";
663 case ClassInterfaceRequest | CCID_CONTROL_GET_DATA_RATES:
664 return "GET_DATA_RATES";
665 }
666 return "unknown";
667}
668
9a77a0f5 669static void ccid_handle_control(USBDevice *dev, USBPacket *p, int request,
007fd62f 670 int value, int index, int length, uint8_t *data)
36707144 671{
61b4887b 672 USBCCIDState *s = USB_CCID_DEV(dev);
9a77a0f5 673 int ret;
36707144 674
7e1ac5ab
AL
675 DPRINTF(s, 1, "%s: got control %s (%x), value %x\n", __func__,
676 ccid_control_to_str(s, request), request, value);
97237e0a
GH
677 ret = usb_desc_handle_control(dev, p, request, value, index, length, data);
678 if (ret >= 0) {
9a77a0f5 679 return;
97237e0a
GH
680 }
681
36707144 682 switch (request) {
36707144 683 /* Class specific requests. */
693e4773 684 case ClassInterfaceOutRequest | CCID_CONTROL_ABORT:
36707144 685 DPRINTF(s, 1, "ccid_control abort UNIMPLEMENTED\n");
9a77a0f5 686 p->status = USB_RET_STALL;
36707144 687 break;
693e4773 688 case ClassInterfaceRequest | CCID_CONTROL_GET_CLOCK_FREQUENCIES:
36707144 689 DPRINTF(s, 1, "ccid_control get clock frequencies UNIMPLEMENTED\n");
9a77a0f5 690 p->status = USB_RET_STALL;
36707144 691 break;
693e4773 692 case ClassInterfaceRequest | CCID_CONTROL_GET_DATA_RATES:
36707144 693 DPRINTF(s, 1, "ccid_control get data rates UNIMPLEMENTED\n");
9a77a0f5 694 p->status = USB_RET_STALL;
36707144
AL
695 break;
696 default:
36707144
AL
697 DPRINTF(s, 1, "got unsupported/bogus control %x, value %x\n",
698 request, value);
9a77a0f5 699 p->status = USB_RET_STALL;
36707144
AL
700 break;
701 }
36707144
AL
702}
703
704static bool ccid_card_inserted(USBCCIDState *s)
705{
706 return s->bmSlotICCState & SLOT_0_STATE_MASK;
707}
708
709static uint8_t ccid_card_status(USBCCIDState *s)
710{
711 return ccid_card_inserted(s)
712 ? (s->powered ?
713 ICC_STATUS_PRESENT_ACTIVE
714 : ICC_STATUS_PRESENT_INACTIVE
715 )
716 : ICC_STATUS_NOT_PRESENT;
717}
718
719static uint8_t ccid_calc_status(USBCCIDState *s)
720{
721 /*
722 * page 55, 6.2.6, calculation of bStatus from bmICCStatus and
723 * bmCommandStatus
724 */
725 uint8_t ret = ccid_card_status(s) | (s->bmCommandStatus << 6);
7e1ac5ab 726 DPRINTF(s, D_VERBOSE, "%s: status = %d\n", __func__, ret);
36707144
AL
727 return ret;
728}
729
730static void ccid_reset_error_status(USBCCIDState *s)
731{
732 s->bError = ERROR_CMD_NOT_SUPPORTED;
733 s->bmCommandStatus = COMMAND_STATUS_NO_ERROR;
734}
735
736static void ccid_write_slot_status(USBCCIDState *s, CCID_Header *recv)
737{
738 CCID_SlotStatus *h = ccid_reserve_recv_buf(s, sizeof(CCID_SlotStatus));
739 if (h == NULL) {
740 return;
741 }
742 h->b.hdr.bMessageType = CCID_MESSAGE_TYPE_RDR_to_PC_SlotStatus;
743 h->b.hdr.dwLength = 0;
744 h->b.hdr.bSlot = recv->bSlot;
745 h->b.hdr.bSeq = recv->bSeq;
746 h->b.bStatus = ccid_calc_status(s);
747 h->b.bError = s->bError;
748 h->bClockStatus = CLOCK_STATUS_RUNNING;
749 ccid_reset_error_status(s);
86d7e214 750 usb_wakeup(s->bulk, 0);
36707144
AL
751}
752
753static void ccid_write_parameters(USBCCIDState *s, CCID_Header *recv)
754{
755 CCID_Parameter *h;
756 uint32_t len = s->ulProtocolDataStructureSize;
757
758 h = ccid_reserve_recv_buf(s, sizeof(CCID_Parameter) + len);
759 if (h == NULL) {
760 return;
761 }
762 h->b.hdr.bMessageType = CCID_MESSAGE_TYPE_RDR_to_PC_Parameters;
763 h->b.hdr.dwLength = 0;
764 h->b.hdr.bSlot = recv->bSlot;
765 h->b.hdr.bSeq = recv->bSeq;
766 h->b.bStatus = ccid_calc_status(s);
767 h->b.bError = s->bError;
768 h->bProtocolNum = s->bProtocolNum;
4942d6c3 769 h->abProtocolDataStructure = s->abProtocolDataStructure;
36707144 770 ccid_reset_error_status(s);
86d7e214 771 usb_wakeup(s->bulk, 0);
36707144
AL
772}
773
774static void ccid_write_data_block(USBCCIDState *s, uint8_t slot, uint8_t seq,
775 const uint8_t *data, uint32_t len)
776{
777 CCID_DataBlock *p = ccid_reserve_recv_buf(s, sizeof(*p) + len);
778
779 if (p == NULL) {
780 return;
781 }
782 p->b.hdr.bMessageType = CCID_MESSAGE_TYPE_RDR_to_PC_DataBlock;
783 p->b.hdr.dwLength = cpu_to_le32(len);
784 p->b.hdr.bSlot = slot;
785 p->b.hdr.bSeq = seq;
786 p->b.bStatus = ccid_calc_status(s);
787 p->b.bError = s->bError;
788 if (p->b.bError) {
7e1ac5ab 789 DPRINTF(s, D_VERBOSE, "error %d\n", p->b.bError);
36707144 790 }
6b1de148 791 if (len) {
719a3077 792 assert(data);
6b1de148
PMD
793 memcpy(p->abData, data, len);
794 }
36707144 795 ccid_reset_error_status(s);
86d7e214 796 usb_wakeup(s->bulk, 0);
36707144
AL
797}
798
47bf53af
AL
799static void ccid_report_error_failed(USBCCIDState *s, uint8_t error)
800{
801 s->bmCommandStatus = COMMAND_STATUS_FAILED;
802 s->bError = error;
803}
804
36707144
AL
805static void ccid_write_data_block_answer(USBCCIDState *s,
806 const uint8_t *data, uint32_t len)
807{
808 uint8_t seq;
809 uint8_t slot;
810
811 if (!ccid_has_pending_answers(s)) {
47bf53af
AL
812 DPRINTF(s, D_WARN, "error: no pending answer to return to guest\n");
813 ccid_report_error_failed(s, ERROR_ICC_MUTE);
814 return;
36707144
AL
815 }
816 ccid_remove_pending_answer(s, &slot, &seq);
817 ccid_write_data_block(s, slot, seq, data, len);
818}
819
2f8f916b
AL
820static uint8_t atr_get_protocol_num(const uint8_t *atr, uint32_t len)
821{
822 int i;
823
824 if (len < 2 || !(atr[1] & 0x80)) {
825 /* too short or TD1 not included */
826 return 0; /* T=0, default */
827 }
828 i = 1 + !!(atr[1] & 0x10) + !!(atr[1] & 0x20) + !!(atr[1] & 0x40);
829 i += !!(atr[1] & 0x80);
830 return atr[i] & 0x0f;
831}
832
36707144
AL
833static void ccid_write_data_block_atr(USBCCIDState *s, CCID_Header *recv)
834{
835 const uint8_t *atr = NULL;
836 uint32_t len = 0;
2f8f916b
AL
837 uint8_t atr_protocol_num;
838 CCID_T0ProtocolDataStructure *t0 = &s->abProtocolDataStructure.t0;
839 CCID_T1ProtocolDataStructure *t1 = &s->abProtocolDataStructure.t1;
36707144
AL
840
841 if (s->card) {
ba7c0520 842 atr = ccid_card_get_atr(s->card, &len);
36707144 843 }
2f8f916b
AL
844 atr_protocol_num = atr_get_protocol_num(atr, len);
845 DPRINTF(s, D_VERBOSE, "%s: atr contains protocol=%d\n", __func__,
846 atr_protocol_num);
847 /* set parameters from ATR - see spec page 109 */
848 s->bProtocolNum = (atr_protocol_num <= 1 ? atr_protocol_num
849 : s->bProtocolNum);
850 switch (atr_protocol_num) {
851 case 0:
852 /* TODO: unimplemented ATR T0 parameters */
853 t0->bmFindexDindex = 0;
854 t0->bmTCCKST0 = 0;
855 t0->bGuardTimeT0 = 0;
856 t0->bWaitingIntegerT0 = 0;
857 t0->bClockStop = 0;
858 break;
859 case 1:
860 /* TODO: unimplemented ATR T1 parameters */
861 t1->bmFindexDindex = 0;
862 t1->bmTCCKST1 = 0;
863 t1->bGuardTimeT1 = 0;
864 t1->bWaitingIntegerT1 = 0;
865 t1->bClockStop = 0;
866 t1->bIFSC = 0;
867 t1->bNadValue = 0;
868 break;
869 default:
870 DPRINTF(s, D_WARN, "%s: error: unsupported ATR protocol %d\n",
871 __func__, atr_protocol_num);
872 }
36707144
AL
873 ccid_write_data_block(s, recv->bSlot, recv->bSeq, atr, len);
874}
875
876static void ccid_set_parameters(USBCCIDState *s, CCID_Header *recv)
877{
878 CCID_SetParameters *ph = (CCID_SetParameters *) recv;
4942d6c3
AL
879 uint32_t protocol_num = ph->bProtocolNum & 3;
880
881 if (protocol_num != 0 && protocol_num != 1) {
882 ccid_report_error_failed(s, ERROR_CMD_NOT_SUPPORTED);
36707144
AL
883 return;
884 }
4942d6c3
AL
885 s->bProtocolNum = protocol_num;
886 s->abProtocolDataStructure = ph->abProtocolDataStructure;
36707144
AL
887}
888
889/*
890 * must be 5 bytes for T=0, 7 bytes for T=1
891 * See page 52
892 */
4942d6c3
AL
893static const CCID_ProtocolDataStructure defaultProtocolDataStructure = {
894 .t1 = {
895 .bmFindexDindex = 0x77,
896 .bmTCCKST1 = 0x00,
897 .bGuardTimeT1 = 0x00,
898 .bWaitingIntegerT1 = 0x00,
899 .bClockStop = 0x00,
900 .bIFSC = 0xfe,
901 .bNadValue = 0x00,
902 }
903};
36707144
AL
904
905static void ccid_reset_parameters(USBCCIDState *s)
906{
d7d218ef 907 s->bProtocolNum = 0; /* T=0 */
4942d6c3 908 s->abProtocolDataStructure = defaultProtocolDataStructure;
36707144
AL
909}
910
36707144
AL
911/* NOTE: only a single slot is supported (SLOT_0) */
912static void ccid_on_slot_change(USBCCIDState *s, bool full)
913{
914 /* RDR_to_PC_NotifySlotChange, 6.3.1 page 56 */
915 uint8_t current = s->bmSlotICCState;
916 if (full) {
917 s->bmSlotICCState |= SLOT_0_STATE_MASK;
918 } else {
919 s->bmSlotICCState &= ~SLOT_0_STATE_MASK;
920 }
921 if (current != s->bmSlotICCState) {
922 s->bmSlotICCState |= SLOT_0_CHANGED_MASK;
923 }
924 s->notify_slot_change = true;
8550a02d 925 usb_wakeup(s->intr, 0);
36707144
AL
926}
927
928static void ccid_write_data_block_error(
929 USBCCIDState *s, uint8_t slot, uint8_t seq)
930{
931 ccid_write_data_block(s, slot, seq, NULL, 0);
932}
933
934static void ccid_on_apdu_from_guest(USBCCIDState *s, CCID_XferBlock *recv)
935{
936 uint32_t len;
937
938 if (ccid_card_status(s) != ICC_STATUS_PRESENT_ACTIVE) {
939 DPRINTF(s, 1,
940 "usb-ccid: not sending apdu to client, no card connected\n");
941 ccid_write_data_block_error(s, recv->hdr.bSlot, recv->hdr.bSeq);
942 return;
943 }
944 len = le32_to_cpu(recv->hdr.dwLength);
945 DPRINTF(s, 1, "%s: seq %d, len %d\n", __func__,
946 recv->hdr.bSeq, len);
947 ccid_add_pending_answer(s, (CCID_Header *)recv);
c7dfbf32 948 if (s->card && len <= BULK_OUT_DATA_SIZE) {
ba7c0520 949 ccid_card_apdu_from_guest(s->card, recv->abData, len);
36707144
AL
950 } else {
951 DPRINTF(s, D_WARN, "warning: discarded apdu\n");
952 }
953}
954
7e1ac5ab
AL
955static const char *ccid_message_type_to_str(uint8_t type)
956{
957 switch (type) {
958 case CCID_MESSAGE_TYPE_PC_to_RDR_IccPowerOn: return "IccPowerOn";
959 case CCID_MESSAGE_TYPE_PC_to_RDR_IccPowerOff: return "IccPowerOff";
960 case CCID_MESSAGE_TYPE_PC_to_RDR_GetSlotStatus: return "GetSlotStatus";
961 case CCID_MESSAGE_TYPE_PC_to_RDR_XfrBlock: return "XfrBlock";
962 case CCID_MESSAGE_TYPE_PC_to_RDR_GetParameters: return "GetParameters";
963 case CCID_MESSAGE_TYPE_PC_to_RDR_ResetParameters: return "ResetParameters";
964 case CCID_MESSAGE_TYPE_PC_to_RDR_SetParameters: return "SetParameters";
965 case CCID_MESSAGE_TYPE_PC_to_RDR_Escape: return "Escape";
966 case CCID_MESSAGE_TYPE_PC_to_RDR_IccClock: return "IccClock";
967 case CCID_MESSAGE_TYPE_PC_to_RDR_T0APDU: return "T0APDU";
968 case CCID_MESSAGE_TYPE_PC_to_RDR_Secure: return "Secure";
969 case CCID_MESSAGE_TYPE_PC_to_RDR_Mechanical: return "Mechanical";
970 case CCID_MESSAGE_TYPE_PC_to_RDR_Abort: return "Abort";
971 case CCID_MESSAGE_TYPE_PC_to_RDR_SetDataRateAndClockFrequency:
972 return "SetDataRateAndClockFrequency";
973 }
974 return "unknown";
975}
976
9a77a0f5 977static void ccid_handle_bulk_out(USBCCIDState *s, USBPacket *p)
36707144
AL
978{
979 CCID_Header *ccid_header;
980
4f4321c1 981 if (p->iov.size + s->bulk_out_pos > BULK_OUT_DATA_SIZE) {
0aeebc73 982 goto err;
36707144 983 }
4f4321c1
GH
984 usb_packet_copy(p, s->bulk_out_data + s->bulk_out_pos, p->iov.size);
985 s->bulk_out_pos += p->iov.size;
7569c546
GH
986 if (s->bulk_out_pos < 10) {
987 DPRINTF(s, 1, "%s: header incomplete\n", __func__);
988 goto err;
989 }
990
991 ccid_header = (CCID_Header *)s->bulk_out_data;
31fb4444
GH
992 if ((s->bulk_out_pos - 10 < ccid_header->dwLength) &&
993 (p->iov.size == CCID_MAX_PACKET_SIZE)) {
36707144 994 DPRINTF(s, D_VERBOSE,
31fb4444
GH
995 "usb-ccid: bulk_in: expecting more packets (%d/%d)\n",
996 s->bulk_out_pos - 10, ccid_header->dwLength);
9a77a0f5 997 return;
36707144 998 }
31fb4444
GH
999 if (s->bulk_out_pos - 10 != ccid_header->dwLength) {
1000 DPRINTF(s, 1,
1001 "usb-ccid: bulk_in: message size mismatch (got %d, expected %d)\n",
1002 s->bulk_out_pos - 10, ccid_header->dwLength);
1003 goto err;
1004 }
0aeebc73
GH
1005
1006 DPRINTF(s, D_MORE_INFO, "%s %x %s\n", __func__,
1007 ccid_header->bMessageType,
1008 ccid_message_type_to_str(ccid_header->bMessageType));
1009 switch (ccid_header->bMessageType) {
1010 case CCID_MESSAGE_TYPE_PC_to_RDR_GetSlotStatus:
1011 ccid_write_slot_status(s, ccid_header);
1012 break;
1013 case CCID_MESSAGE_TYPE_PC_to_RDR_IccPowerOn:
1014 DPRINTF(s, 1, "%s: PowerOn: %d\n", __func__,
36707144 1015 ((CCID_IccPowerOn *)(ccid_header))->bPowerSelect);
0aeebc73
GH
1016 s->powered = true;
1017 if (!ccid_card_inserted(s)) {
1018 ccid_report_error_failed(s, ERROR_ICC_MUTE);
1019 }
1020 /* atr is written regardless of error. */
1021 ccid_write_data_block_atr(s, ccid_header);
1022 break;
1023 case CCID_MESSAGE_TYPE_PC_to_RDR_IccPowerOff:
1024 ccid_reset_error_status(s);
1025 s->powered = false;
1026 ccid_write_slot_status(s, ccid_header);
1027 break;
1028 case CCID_MESSAGE_TYPE_PC_to_RDR_XfrBlock:
1029 ccid_on_apdu_from_guest(s, (CCID_XferBlock *)s->bulk_out_data);
1030 break;
1031 case CCID_MESSAGE_TYPE_PC_to_RDR_SetParameters:
1032 ccid_reset_error_status(s);
1033 ccid_set_parameters(s, ccid_header);
1034 ccid_write_parameters(s, ccid_header);
1035 break;
1036 case CCID_MESSAGE_TYPE_PC_to_RDR_ResetParameters:
1037 ccid_reset_error_status(s);
1038 ccid_reset_parameters(s);
1039 ccid_write_parameters(s, ccid_header);
1040 break;
1041 case CCID_MESSAGE_TYPE_PC_to_RDR_GetParameters:
1042 ccid_reset_error_status(s);
1043 ccid_write_parameters(s, ccid_header);
1044 break;
1045 case CCID_MESSAGE_TYPE_PC_to_RDR_Mechanical:
1046 ccid_report_error_failed(s, 0);
1047 ccid_write_slot_status(s, ccid_header);
1048 break;
1049 default:
1050 DPRINTF(s, 1,
36707144
AL
1051 "handle_data: ERROR: unhandled message type %Xh\n",
1052 ccid_header->bMessageType);
0aeebc73
GH
1053 /*
1054 * The caller is expecting the device to respond, tell it we
1055 * don't support the operation.
1056 */
1057 ccid_report_error_failed(s, ERROR_CMD_NOT_SUPPORTED);
1058 ccid_write_slot_status(s, ccid_header);
1059 break;
36707144
AL
1060 }
1061 s->bulk_out_pos = 0;
0aeebc73
GH
1062 return;
1063
1064err:
1065 p->status = USB_RET_STALL;
1066 s->bulk_out_pos = 0;
1067 return;
36707144
AL
1068}
1069
8030dca3
JJ
1070static void ccid_bulk_in_copy_to_guest(USBCCIDState *s, USBPacket *p,
1071 unsigned int max_packet_size)
36707144 1072{
9a77a0f5 1073 int len = 0;
36707144 1074
36707144
AL
1075 ccid_bulk_in_get(s);
1076 if (s->current_bulk_in != NULL) {
9a77a0f5 1077 len = MIN(s->current_bulk_in->len - s->current_bulk_in->pos,
4f4321c1 1078 p->iov.size);
8030dca3
JJ
1079 if (len) {
1080 usb_packet_copy(p, s->current_bulk_in->data +
1081 s->current_bulk_in->pos, len);
1082 }
9a77a0f5 1083 s->current_bulk_in->pos += len;
8030dca3
JJ
1084 if (s->current_bulk_in->pos == s->current_bulk_in->len
1085 && len != max_packet_size) {
36707144
AL
1086 ccid_bulk_in_release(s);
1087 }
1088 } else {
1089 /* return when device has no data - usb 2.0 spec Table 8-4 */
9a77a0f5 1090 p->status = USB_RET_NAK;
36707144 1091 }
9a77a0f5 1092 if (len) {
36707144 1093 DPRINTF(s, D_MORE_INFO,
4f4321c1 1094 "%s: %zd/%d req/act to guest (BULK_IN)\n",
9a77a0f5 1095 __func__, p->iov.size, len);
36707144 1096 }
9a77a0f5 1097 if (len < p->iov.size) {
36707144 1098 DPRINTF(s, 1,
4f4321c1 1099 "%s: returning short (EREMOTEIO) %d < %zd\n",
9a77a0f5 1100 __func__, len, p->iov.size);
36707144 1101 }
36707144
AL
1102}
1103
9a77a0f5 1104static void ccid_handle_data(USBDevice *dev, USBPacket *p)
36707144 1105{
61b4887b 1106 USBCCIDState *s = USB_CCID_DEV(dev);
4f4321c1 1107 uint8_t buf[2];
36707144
AL
1108
1109 switch (p->pid) {
1110 case USB_TOKEN_OUT:
9a77a0f5 1111 ccid_handle_bulk_out(s, p);
36707144
AL
1112 break;
1113
1114 case USB_TOKEN_IN:
079d0b7f 1115 switch (p->ep->nr) {
36707144 1116 case CCID_BULK_IN_EP:
8030dca3 1117 ccid_bulk_in_copy_to_guest(s, p, dev->ep_ctl.max_packet_size);
36707144
AL
1118 break;
1119 case CCID_INT_IN_EP:
1120 if (s->notify_slot_change) {
1121 /* page 56, RDR_to_PC_NotifySlotChange */
4f4321c1
GH
1122 buf[0] = CCID_MESSAGE_TYPE_RDR_to_PC_NotifySlotChange;
1123 buf[1] = s->bmSlotICCState;
1124 usb_packet_copy(p, buf, 2);
36707144
AL
1125 s->notify_slot_change = false;
1126 s->bmSlotICCState &= ~SLOT_0_CHANGED_MASK;
1127 DPRINTF(s, D_INFO,
1128 "handle_data: int_in: notify_slot_change %X, "
4f4321c1
GH
1129 "requested len %zd\n",
1130 s->bmSlotICCState, p->iov.size);
c4020746
HG
1131 } else {
1132 p->status = USB_RET_NAK;
36707144
AL
1133 }
1134 break;
1135 default:
1136 DPRINTF(s, 1, "Bad endpoint\n");
9a77a0f5 1137 p->status = USB_RET_STALL;
36707144
AL
1138 break;
1139 }
1140 break;
1141 default:
1142 DPRINTF(s, 1, "Bad token\n");
9a77a0f5 1143 p->status = USB_RET_STALL;
36707144
AL
1144 break;
1145 }
36707144
AL
1146}
1147
c4fe9700 1148static void ccid_unrealize(USBDevice *dev, Error **errp)
36707144 1149{
61b4887b 1150 USBCCIDState *s = USB_CCID_DEV(dev);
36707144
AL
1151
1152 ccid_bulk_in_clear(s);
1153}
1154
1155static void ccid_flush_pending_answers(USBCCIDState *s)
1156{
1157 while (ccid_has_pending_answers(s)) {
1158 ccid_write_data_block_answer(s, NULL, 0);
1159 }
1160}
1161
1162static Answer *ccid_peek_next_answer(USBCCIDState *s)
1163{
1164 return s->pending_answers_num == 0
1165 ? NULL
1166 : &s->pending_answers[s->pending_answers_start % PENDING_ANSWERS_NUM];
1167}
1168
3cb75a7c
PB
1169static Property ccid_props[] = {
1170 DEFINE_PROP_UINT32("slot", struct CCIDCardState, slot, 0),
1171 DEFINE_PROP_END_OF_LIST(),
1172};
1173
0d936928
AL
1174#define TYPE_CCID_BUS "ccid-bus"
1175#define CCID_BUS(obj) OBJECT_CHECK(CCIDBus, (obj), TYPE_CCID_BUS)
1176
1177static const TypeInfo ccid_bus_info = {
1178 .name = TYPE_CCID_BUS,
1179 .parent = TYPE_BUS,
1180 .instance_size = sizeof(CCIDBus),
36707144
AL
1181};
1182
36707144
AL
1183void ccid_card_send_apdu_to_guest(CCIDCardState *card,
1184 uint8_t *apdu, uint32_t len)
1185{
61b4887b 1186 DeviceState *qdev = DEVICE(card);
cfda2cef 1187 USBDevice *dev = USB_DEVICE(qdev->parent_bus->parent);
61b4887b 1188 USBCCIDState *s = USB_CCID_DEV(dev);
36707144
AL
1189 Answer *answer;
1190
1191 if (!ccid_has_pending_answers(s)) {
1192 DPRINTF(s, 1, "CCID ERROR: got an APDU without pending answers\n");
1193 return;
1194 }
1195 s->bmCommandStatus = COMMAND_STATUS_NO_ERROR;
1196 answer = ccid_peek_next_answer(s);
1197 if (answer == NULL) {
47bf53af
AL
1198 DPRINTF(s, D_WARN, "%s: error: unexpected lack of answer\n", __func__);
1199 ccid_report_error_failed(s, ERROR_HW_ERROR);
1200 return;
36707144
AL
1201 }
1202 DPRINTF(s, 1, "APDU returned to guest %d (answer seq %d, slot %d)\n",
1203 len, answer->seq, answer->slot);
1204 ccid_write_data_block_answer(s, apdu, len);
1205}
1206
1207void ccid_card_card_removed(CCIDCardState *card)
1208{
61b4887b 1209 DeviceState *qdev = DEVICE(card);
cfda2cef 1210 USBDevice *dev = USB_DEVICE(qdev->parent_bus->parent);
61b4887b 1211 USBCCIDState *s = USB_CCID_DEV(dev);
36707144
AL
1212
1213 ccid_on_slot_change(s, false);
1214 ccid_flush_pending_answers(s);
1215 ccid_reset(s);
1216}
1217
1218int ccid_card_ccid_attach(CCIDCardState *card)
1219{
61b4887b 1220 DeviceState *qdev = DEVICE(card);
cfda2cef 1221 USBDevice *dev = USB_DEVICE(qdev->parent_bus->parent);
61b4887b 1222 USBCCIDState *s = USB_CCID_DEV(dev);
36707144
AL
1223
1224 DPRINTF(s, 1, "CCID Attach\n");
36707144
AL
1225 return 0;
1226}
1227
1228void ccid_card_ccid_detach(CCIDCardState *card)
1229{
61b4887b 1230 DeviceState *qdev = DEVICE(card);
cfda2cef 1231 USBDevice *dev = USB_DEVICE(qdev->parent_bus->parent);
61b4887b 1232 USBCCIDState *s = USB_CCID_DEV(dev);
36707144
AL
1233
1234 DPRINTF(s, 1, "CCID Detach\n");
1235 if (ccid_card_inserted(s)) {
1236 ccid_on_slot_change(s, false);
1237 }
1238 ccid_detach(s);
1239}
1240
1241void ccid_card_card_error(CCIDCardState *card, uint64_t error)
1242{
61b4887b 1243 DeviceState *qdev = DEVICE(card);
cfda2cef 1244 USBDevice *dev = USB_DEVICE(qdev->parent_bus->parent);
61b4887b 1245 USBCCIDState *s = USB_CCID_DEV(dev);
36707144
AL
1246
1247 s->bmCommandStatus = COMMAND_STATUS_FAILED;
1248 s->last_answer_error = error;
c53c1258 1249 DPRINTF(s, 1, "VSC_Error: %" PRIX64 "\n", s->last_answer_error);
62a2ab6a 1250 /* TODO: these errors should be more verbose and propagated to the guest.*/
36707144
AL
1251 /*
1252 * We flush all pending answers on CardRemove message in ccid-card-passthru,
1253 * so check that first to not trigger abort
1254 */
1255 if (ccid_has_pending_answers(s)) {
1256 ccid_write_data_block_answer(s, NULL, 0);
1257 }
1258}
1259
1260void ccid_card_card_inserted(CCIDCardState *card)
1261{
61b4887b 1262 DeviceState *qdev = DEVICE(card);
cfda2cef 1263 USBDevice *dev = USB_DEVICE(qdev->parent_bus->parent);
61b4887b 1264 USBCCIDState *s = USB_CCID_DEV(dev);
36707144
AL
1265
1266 s->bmCommandStatus = COMMAND_STATUS_NO_ERROR;
1267 ccid_flush_pending_answers(s);
1268 ccid_on_slot_change(s, true);
1269}
1270
80ae8654 1271static void ccid_card_unrealize(DeviceState *qdev, Error **errp)
36707144 1272{
ba7c0520 1273 CCIDCardState *card = CCID_CARD(qdev);
80ae8654 1274 CCIDCardClass *cc = CCID_CARD_GET_CLASS(card);
cfda2cef 1275 USBDevice *dev = USB_DEVICE(qdev->parent_bus->parent);
61b4887b 1276 USBCCIDState *s = USB_CCID_DEV(dev);
80ae8654 1277 Error *local_err = NULL;
36707144
AL
1278
1279 if (ccid_card_inserted(s)) {
1280 ccid_card_card_removed(card);
1281 }
80ae8654
PMD
1282 if (cc->unrealize) {
1283 cc->unrealize(card, &local_err);
1284 if (local_err != NULL) {
1285 error_propagate(errp, local_err);
1286 return;
1287 }
1288 }
36707144 1289 s->card = NULL;
36707144
AL
1290}
1291
cc847bfd 1292static void ccid_card_realize(DeviceState *qdev, Error **errp)
36707144 1293{
ba7c0520 1294 CCIDCardState *card = CCID_CARD(qdev);
c7516699 1295 CCIDCardClass *cc = CCID_CARD_GET_CLASS(card);
cfda2cef 1296 USBDevice *dev = USB_DEVICE(qdev->parent_bus->parent);
61b4887b 1297 USBCCIDState *s = USB_CCID_DEV(dev);
cc847bfd 1298 Error *local_err = NULL;
36707144
AL
1299
1300 if (card->slot != 0) {
cc847bfd
MZ
1301 error_setg(errp, "usb-ccid supports one slot, can't add %d",
1302 card->slot);
1303 return;
36707144
AL
1304 }
1305 if (s->card != NULL) {
cc847bfd
MZ
1306 error_setg(errp, "usb-ccid card already full, not adding");
1307 return;
36707144 1308 }
c7516699
PMD
1309 if (cc->realize) {
1310 cc->realize(card, &local_err);
1311 if (local_err != NULL) {
1312 error_propagate(errp, local_err);
1313 return;
1314 }
36707144 1315 }
cc847bfd 1316 s->card = card;
36707144
AL
1317}
1318
0b8b863f 1319static void ccid_realize(USBDevice *dev, Error **errp)
36707144 1320{
61b4887b 1321 USBCCIDState *s = USB_CCID_DEV(dev);
36707144 1322
9d55d1ad 1323 usb_desc_create_serial(dev);
97237e0a 1324 usb_desc_init(dev);
fb17dfe0
AF
1325 qbus_create_inplace(&s->bus, sizeof(s->bus), TYPE_CCID_BUS, DEVICE(dev),
1326 NULL);
94d1cc5f 1327 qbus_set_hotplug_handler(BUS(&s->bus), OBJECT(dev), &error_abort);
7567b51f 1328 s->intr = usb_ep_get(dev, USB_TOKEN_IN, CCID_INT_IN_EP);
86d7e214 1329 s->bulk = usb_ep_get(dev, USB_TOKEN_IN, CCID_BULK_IN_EP);
36707144 1330 s->card = NULL;
36707144 1331 s->dev.speed = USB_SPEED_FULL;
ba3f9bfb 1332 s->dev.speedmask = USB_SPEED_MASK_FULL;
36707144
AL
1333 s->notify_slot_change = false;
1334 s->powered = true;
1335 s->pending_answers_num = 0;
1336 s->last_answer_error = 0;
1337 s->bulk_in_pending_start = 0;
1338 s->bulk_in_pending_end = 0;
1339 s->current_bulk_in = NULL;
1340 ccid_reset_error_status(s);
1341 s->bulk_out_pos = 0;
1342 ccid_reset_parameters(s);
1343 ccid_reset(s);
b16352ac 1344 s->debug = parse_debug_env("QEMU_CCID_DEBUG", D_VERBOSE, s->debug);
36707144
AL
1345}
1346
1347static int ccid_post_load(void *opaque, int version_id)
1348{
1349 USBCCIDState *s = opaque;
1350
1351 /*
1352 * This must be done after usb_device_attach, which sets state to ATTACHED,
1353 * while it must be DEFAULT in order to accept packets (like it is after
1354 * reset, but reset will reset our addr and call our reset handler which
1355 * may change state, and we don't want to do that when migrating).
1356 */
1357 s->dev.state = s->state_vmstate;
1358 return 0;
1359}
1360
44b1ff31 1361static int ccid_pre_save(void *opaque)
36707144
AL
1362{
1363 USBCCIDState *s = opaque;
1364
1365 s->state_vmstate = s->dev.state;
44b1ff31
DDAG
1366
1367 return 0;
36707144
AL
1368}
1369
1370static VMStateDescription bulk_in_vmstate = {
1371 .name = "CCID BulkIn state",
1372 .version_id = 1,
1373 .minimum_version_id = 1,
1374 .fields = (VMStateField[]) {
1375 VMSTATE_BUFFER(data, BulkIn),
1376 VMSTATE_UINT32(len, BulkIn),
1377 VMSTATE_UINT32(pos, BulkIn),
1378 VMSTATE_END_OF_LIST()
1379 }
1380};
1381
1382static VMStateDescription answer_vmstate = {
1383 .name = "CCID Answer state",
1384 .version_id = 1,
1385 .minimum_version_id = 1,
1386 .fields = (VMStateField[]) {
1387 VMSTATE_UINT8(slot, Answer),
1388 VMSTATE_UINT8(seq, Answer),
1389 VMSTATE_END_OF_LIST()
1390 }
1391};
1392
1393static VMStateDescription usb_device_vmstate = {
1394 .name = "usb_device",
1395 .version_id = 1,
1396 .minimum_version_id = 1,
1397 .fields = (VMStateField[]) {
1398 VMSTATE_UINT8(addr, USBDevice),
1399 VMSTATE_BUFFER(setup_buf, USBDevice),
1400 VMSTATE_BUFFER(data_buf, USBDevice),
1401 VMSTATE_END_OF_LIST()
1402 }
1403};
1404
1405static VMStateDescription ccid_vmstate = {
6783ecf1 1406 .name = "usb-ccid",
36707144
AL
1407 .version_id = 1,
1408 .minimum_version_id = 1,
1409 .post_load = ccid_post_load,
1410 .pre_save = ccid_pre_save,
1411 .fields = (VMStateField[]) {
1412 VMSTATE_STRUCT(dev, USBCCIDState, 1, usb_device_vmstate, USBDevice),
1413 VMSTATE_UINT8(debug, USBCCIDState),
1414 VMSTATE_BUFFER(bulk_out_data, USBCCIDState),
1415 VMSTATE_UINT32(bulk_out_pos, USBCCIDState),
1416 VMSTATE_UINT8(bmSlotICCState, USBCCIDState),
1417 VMSTATE_UINT8(powered, USBCCIDState),
1418 VMSTATE_UINT8(notify_slot_change, USBCCIDState),
1419 VMSTATE_UINT64(last_answer_error, USBCCIDState),
1420 VMSTATE_UINT8(bError, USBCCIDState),
1421 VMSTATE_UINT8(bmCommandStatus, USBCCIDState),
1422 VMSTATE_UINT8(bProtocolNum, USBCCIDState),
4942d6c3 1423 VMSTATE_BUFFER(abProtocolDataStructure.data, USBCCIDState),
36707144
AL
1424 VMSTATE_UINT32(ulProtocolDataStructureSize, USBCCIDState),
1425 VMSTATE_STRUCT_ARRAY(bulk_in_pending, USBCCIDState,
1426 BULK_IN_PENDING_NUM, 1, bulk_in_vmstate, BulkIn),
1427 VMSTATE_UINT32(bulk_in_pending_start, USBCCIDState),
1428 VMSTATE_UINT32(bulk_in_pending_end, USBCCIDState),
1429 VMSTATE_STRUCT_ARRAY(pending_answers, USBCCIDState,
1430 PENDING_ANSWERS_NUM, 1, answer_vmstate, Answer),
1431 VMSTATE_UINT32(pending_answers_num, USBCCIDState),
31bd59db 1432 VMSTATE_UNUSED(1), /* was migration_state */
36707144
AL
1433 VMSTATE_UINT32(state_vmstate, USBCCIDState),
1434 VMSTATE_END_OF_LIST()
1435 }
1436};
1437
39bffca2
AL
1438static Property ccid_properties[] = {
1439 DEFINE_PROP_UINT8("debug", USBCCIDState, debug, 0),
1440 DEFINE_PROP_END_OF_LIST(),
1441};
1442
62aed765
AL
1443static void ccid_class_initfn(ObjectClass *klass, void *data)
1444{
39bffca2 1445 DeviceClass *dc = DEVICE_CLASS(klass);
62aed765 1446 USBDeviceClass *uc = USB_DEVICE_CLASS(klass);
138d587a 1447 HotplugHandlerClass *hc = HOTPLUG_HANDLER_CLASS(klass);
62aed765 1448
0b8b863f 1449 uc->realize = ccid_realize;
62aed765
AL
1450 uc->product_desc = "QEMU USB CCID";
1451 uc->usb_desc = &desc_ccid;
62aed765
AL
1452 uc->handle_reset = ccid_handle_reset;
1453 uc->handle_control = ccid_handle_control;
1454 uc->handle_data = ccid_handle_data;
c4fe9700 1455 uc->unrealize = ccid_unrealize;
39bffca2
AL
1456 dc->desc = "CCID Rev 1.1 smartcard reader";
1457 dc->vmsd = &ccid_vmstate;
1458 dc->props = ccid_properties;
125ee0ed 1459 set_bit(DEVICE_CATEGORY_INPUT, dc->categories);
138d587a 1460 hc->unplug = qdev_simple_device_unplug_cb;
62aed765
AL
1461}
1462
8c43a6f0 1463static const TypeInfo ccid_info = {
39bffca2
AL
1464 .name = CCID_DEV_NAME,
1465 .parent = TYPE_USB_DEVICE,
1466 .instance_size = sizeof(USBCCIDState),
1467 .class_init = ccid_class_initfn,
138d587a
IM
1468 .interfaces = (InterfaceInfo[]) {
1469 { TYPE_HOTPLUG_HANDLER },
1470 { }
1471 }
36707144
AL
1472};
1473
39bffca2
AL
1474static void ccid_card_class_init(ObjectClass *klass, void *data)
1475{
1476 DeviceClass *k = DEVICE_CLASS(klass);
0d936928 1477 k->bus_type = TYPE_CCID_BUS;
cc847bfd 1478 k->realize = ccid_card_realize;
80ae8654 1479 k->unrealize = ccid_card_unrealize;
bce54474 1480 k->props = ccid_props;
39bffca2
AL
1481}
1482
8c43a6f0 1483static const TypeInfo ccid_card_type_info = {
ba7c0520
AL
1484 .name = TYPE_CCID_CARD,
1485 .parent = TYPE_DEVICE,
1486 .instance_size = sizeof(CCIDCardState),
1487 .abstract = true,
1488 .class_size = sizeof(CCIDCardClass),
39bffca2 1489 .class_init = ccid_card_class_init,
ba7c0520
AL
1490};
1491
83f7d43a 1492static void ccid_register_types(void)
36707144 1493{
0d936928 1494 type_register_static(&ccid_bus_info);
ba7c0520 1495 type_register_static(&ccid_card_type_info);
39bffca2 1496 type_register_static(&ccid_info);
ba02430f 1497 usb_legacy_register(CCID_DEV_NAME, "ccid", NULL);
36707144 1498}
83f7d43a
AF
1499
1500type_init(ccid_register_types)
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