tty: move some tty-only functions to drivers/tty/tty.h
[linux-2.6-block.git] / drivers / tty / n_gsm.c
CommitLineData
e3b3d0f5 1// SPDX-License-Identifier: GPL-2.0
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2/*
3 * n_gsm.c GSM 0710 tty multiplexor
4 * Copyright (c) 2009/10 Intel Corporation
5 *
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6 * * THIS IS A DEVELOPMENT SNAPSHOT IT IS NOT A FINAL RELEASE *
7 *
8 * TO DO:
9 * Mostly done: ioctls for setting modes/timing
5f9a31d6 10 * Partly done: hooks so you can pull off frames to non tty devs
e1eaea46 11 * Restart DLCI 0 when it closes ?
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12 * Improve the tx engine
13 * Resolve tx side locking by adding a queue_head and routing
14 * all control traffic via it
15 * General tidy/document
16 * Review the locking/move to refcounts more (mux now moved to an
17 * alloc/free model ready)
18 * Use newest tty open/close port helpers and install hooks
19 * What to do about power functions ?
20 * Termios setting and negotiation
21 * Do we need a 'which mux are you' ioctl to correlate mux and tty sets
22 *
23 */
24
25#include <linux/types.h>
26#include <linux/major.h>
27#include <linux/errno.h>
28#include <linux/signal.h>
29#include <linux/fcntl.h>
174cd4b1 30#include <linux/sched/signal.h>
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31#include <linux/interrupt.h>
32#include <linux/tty.h>
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33#include <linux/ctype.h>
34#include <linux/mm.h>
35#include <linux/string.h>
36#include <linux/slab.h>
37#include <linux/poll.h>
38#include <linux/bitops.h>
39#include <linux/file.h>
40#include <linux/uaccess.h>
41#include <linux/module.h>
42#include <linux/timer.h>
43#include <linux/tty_flip.h>
44#include <linux/tty_driver.h>
45#include <linux/serial.h>
46#include <linux/kfifo.h>
47#include <linux/skbuff.h>
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48#include <net/arp.h>
49#include <linux/ip.h>
50#include <linux/netdevice.h>
51#include <linux/etherdevice.h>
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52#include <linux/gsmmux.h>
53
54static int debug;
55module_param(debug, int, 0600);
56
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57/* Defaults: these are from the specification */
58
59#define T1 10 /* 100mS */
60#define T2 34 /* 333mS */
61#define N2 3 /* Retry 3 times */
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62
63/* Use long timers for testing at low speed with debug on */
64#ifdef DEBUG_TIMING
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65#define T1 100
66#define T2 200
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67#endif
68
5f9a31d6 69/*
25985edc 70 * Semi-arbitrary buffer size limits. 0710 is normally run with 32-64 byte
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71 * limits so this is plenty
72 */
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73#define MAX_MRU 1500
74#define MAX_MTU 1500
75#define GSM_NET_TX_TIMEOUT (HZ*10)
76
b410e35d 77/*
bcd5abe2 78 * struct gsm_mux_net - network interface
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79 *
80 * Created when net interface is initialized.
724ac070 81 */
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82struct gsm_mux_net {
83 struct kref ref;
84 struct gsm_dlci *dlci;
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85};
86
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87/*
88 * Each block of data we have queued to go out is in the form of
25985edc 89 * a gsm_msg which holds everything we need in a link layer independent
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90 * format
91 */
92
93struct gsm_msg {
b4338e1e 94 struct list_head list;
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95 u8 addr; /* DLCI address + flags */
96 u8 ctrl; /* Control byte + flags */
97 unsigned int len; /* Length of data block (can be zero) */
98 unsigned char *data; /* Points into buffer but not at the start */
2f202d03 99 unsigned char buffer[];
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100};
101
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102enum gsm_dlci_state {
103 DLCI_CLOSED,
104 DLCI_OPENING, /* Sending SABM not seen UA */
105 DLCI_OPEN, /* SABM/UA complete */
106 DLCI_CLOSING, /* Sending DISC not seen UA/DM */
107};
108
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109enum gsm_dlci_mode {
110 DLCI_MODE_ABM, /* Normal Asynchronous Balanced Mode */
111 DLCI_MODE_ADM, /* Asynchronous Disconnected Mode */
112};
113
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114/*
115 * Each active data link has a gsm_dlci structure associated which ties
116 * the link layer to an optional tty (if the tty side is open). To avoid
117 * complexity right now these are only ever freed up when the mux is
118 * shut down.
119 *
120 * At the moment we don't free DLCI objects until the mux is torn down
121 * this avoid object life time issues but might be worth review later.
122 */
123
124struct gsm_dlci {
125 struct gsm_mux *gsm;
126 int addr;
72ae8cc1 127 enum gsm_dlci_state state;
bcd5abe2 128 struct mutex mutex;
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129
130 /* Link layer */
e1785996 131 enum gsm_dlci_mode mode;
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132 spinlock_t lock; /* Protects the internal state */
133 struct timer_list t1; /* Retransmit timer for SABM and UA */
134 int retries;
135 /* Uplink tty if active */
136 struct tty_port port; /* The tty bound to this DLCI if there is one */
036bca1f 137 struct kfifo fifo; /* Queue fifo for the DLCI */
e1eaea46 138 int adaption; /* Adaption layer in use */
bcd5abe2 139 int prev_adaption;
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140 u32 modem_rx; /* Our incoming virtual modem lines */
141 u32 modem_tx; /* Our outgoing modem lines */
5677fcf3 142 bool dead; /* Refuse re-open */
e1eaea46 143 /* Flow control */
e9360b9a 144 bool throttled; /* Private copy of throttle state */
7a9ed9c0 145 bool constipated; /* Throttle status for outgoing */
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146 /* Packetised I/O */
147 struct sk_buff *skb; /* Frame being sent */
148 struct sk_buff_head skb_list; /* Queued frames */
149 /* Data handling callback */
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150 void (*data)(struct gsm_dlci *dlci, const u8 *data, int len);
151 void (*prev_data)(struct gsm_dlci *dlci, const u8 *data, int len);
bcd5abe2 152 struct net_device *net; /* network interface, if created */
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153};
154
c33eecc7 155/* DLCI 0, 62/63 are special or reserved see gsmtty_open */
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156
157#define NUM_DLCI 64
158
159/*
160 * DLCI 0 is used to pass control blocks out of band of the data
161 * flow (and with a higher link priority). One command can be outstanding
162 * at a time and we use this structure to manage them. They are created
163 * and destroyed by the user context, and updated by the receive paths
164 * and timers
165 */
166
167struct gsm_control {
168 u8 cmd; /* Command we are issuing */
169 u8 *data; /* Data for the command in case we retransmit */
170 int len; /* Length of block for retransmission */
171 int done; /* Done flag */
172 int error; /* Error if any */
173};
174
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175enum gsm_mux_state {
176 GSM_SEARCH,
177 GSM_START,
178 GSM_ADDRESS,
179 GSM_CONTROL,
180 GSM_LEN,
181 GSM_DATA,
182 GSM_FCS,
183 GSM_OVERRUN,
184 GSM_LEN0,
185 GSM_LEN1,
186 GSM_SSOF,
187};
188
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189/*
190 * Each GSM mux we have is represented by this structure. If we are
191 * operating as an ldisc then we use this structure as our ldisc
192 * state. We need to sort out lifetimes and locking with respect
193 * to the gsm mux array. For now we don't free DLCI objects that
194 * have been instantiated until the mux itself is terminated.
195 *
196 * To consider further: tty open versus mux shutdown.
197 */
198
199struct gsm_mux {
200 struct tty_struct *tty; /* The tty our ldisc is bound to */
201 spinlock_t lock;
dfabf7ff 202 struct mutex mutex;
d50f6dca 203 unsigned int num;
6ab8fba7 204 struct kref ref;
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205
206 /* Events on the GSM channel */
207 wait_queue_head_t event;
208
209 /* Bits for GSM mode decoding */
210
211 /* Framing Layer */
212 unsigned char *buf;
329aa6e6 213 enum gsm_mux_state state;
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214 unsigned int len;
215 unsigned int address;
216 unsigned int count;
c50704bd 217 bool escape;
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218 int encoding;
219 u8 control;
220 u8 fcs;
c2f2f000 221 u8 received_fcs;
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222 u8 *txframe; /* TX framing buffer */
223
a579767c 224 /* Method for the receiver side */
e1eaea46 225 void (*receive)(struct gsm_mux *gsm, u8 ch);
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226
227 /* Link Layer */
228 unsigned int mru;
229 unsigned int mtu;
230 int initiator; /* Did we initiate connection */
5677fcf3 231 bool dead; /* Has the mux been shut down */
e1eaea46 232 struct gsm_dlci *dlci[NUM_DLCI];
7a9ed9c0 233 bool constipated; /* Asked by remote to shut up */
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234
235 spinlock_t tx_lock;
236 unsigned int tx_bytes; /* TX data outstanding */
237#define TX_THRESH_HI 8192
238#define TX_THRESH_LO 2048
b4338e1e 239 struct list_head tx_list; /* Pending data packets */
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240
241 /* Control messages */
242 struct timer_list t2_timer; /* Retransmit timer for commands */
243 int cretries; /* Command retry counter */
244 struct gsm_control *pending_cmd;/* Our current pending command */
245 spinlock_t control_lock; /* Protects the pending command */
246
247 /* Configuration */
248 int adaption; /* 1 or 2 supported */
249 u8 ftype; /* UI or UIH */
250 int t1, t2; /* Timers in 1/100th of a sec */
251 int n2; /* Retry count */
252
253 /* Statistics (not currently exposed) */
254 unsigned long bad_fcs;
255 unsigned long malformed;
256 unsigned long io_error;
257 unsigned long bad_size;
258 unsigned long unsupported;
259};
260
261
262/*
263 * Mux objects - needed so that we can translate a tty index into the
264 * relevant mux and DLCI.
265 */
266
267#define MAX_MUX 4 /* 256 minors */
268static struct gsm_mux *gsm_mux[MAX_MUX]; /* GSM muxes */
399d44a1 269static DEFINE_SPINLOCK(gsm_mux_lock);
e1eaea46 270
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271static struct tty_driver *gsm_tty_driver;
272
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273/*
274 * This section of the driver logic implements the GSM encodings
275 * both the basic and the 'advanced'. Reliable transport is not
276 * supported.
277 */
278
279#define CR 0x02
280#define EA 0x01
281#define PF 0x10
282
283/* I is special: the rest are ..*/
284#define RR 0x01
285#define UI 0x03
286#define RNR 0x05
287#define REJ 0x09
288#define DM 0x0F
289#define SABM 0x2F
290#define DISC 0x43
291#define UA 0x63
292#define UIH 0xEF
293
294/* Channel commands */
295#define CMD_NSC 0x09
296#define CMD_TEST 0x11
297#define CMD_PSC 0x21
298#define CMD_RLS 0x29
299#define CMD_FCOFF 0x31
300#define CMD_PN 0x41
301#define CMD_RPN 0x49
302#define CMD_FCON 0x51
303#define CMD_CLD 0x61
304#define CMD_SNC 0x69
305#define CMD_MSC 0x71
306
307/* Virtual modem bits */
308#define MDM_FC 0x01
309#define MDM_RTC 0x02
310#define MDM_RTR 0x04
311#define MDM_IC 0x20
312#define MDM_DV 0x40
313
314#define GSM0_SOF 0xF9
5f9a31d6 315#define GSM1_SOF 0x7E
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316#define GSM1_ESCAPE 0x7D
317#define GSM1_ESCAPE_BITS 0x20
318#define XON 0x11
319#define XOFF 0x13
320
321static const struct tty_port_operations gsm_port_ops;
322
323/*
324 * CRC table for GSM 0710
325 */
326
327static const u8 gsm_fcs8[256] = {
328 0x00, 0x91, 0xE3, 0x72, 0x07, 0x96, 0xE4, 0x75,
329 0x0E, 0x9F, 0xED, 0x7C, 0x09, 0x98, 0xEA, 0x7B,
330 0x1C, 0x8D, 0xFF, 0x6E, 0x1B, 0x8A, 0xF8, 0x69,
331 0x12, 0x83, 0xF1, 0x60, 0x15, 0x84, 0xF6, 0x67,
332 0x38, 0xA9, 0xDB, 0x4A, 0x3F, 0xAE, 0xDC, 0x4D,
333 0x36, 0xA7, 0xD5, 0x44, 0x31, 0xA0, 0xD2, 0x43,
334 0x24, 0xB5, 0xC7, 0x56, 0x23, 0xB2, 0xC0, 0x51,
335 0x2A, 0xBB, 0xC9, 0x58, 0x2D, 0xBC, 0xCE, 0x5F,
336 0x70, 0xE1, 0x93, 0x02, 0x77, 0xE6, 0x94, 0x05,
337 0x7E, 0xEF, 0x9D, 0x0C, 0x79, 0xE8, 0x9A, 0x0B,
338 0x6C, 0xFD, 0x8F, 0x1E, 0x6B, 0xFA, 0x88, 0x19,
339 0x62, 0xF3, 0x81, 0x10, 0x65, 0xF4, 0x86, 0x17,
340 0x48, 0xD9, 0xAB, 0x3A, 0x4F, 0xDE, 0xAC, 0x3D,
341 0x46, 0xD7, 0xA5, 0x34, 0x41, 0xD0, 0xA2, 0x33,
342 0x54, 0xC5, 0xB7, 0x26, 0x53, 0xC2, 0xB0, 0x21,
343 0x5A, 0xCB, 0xB9, 0x28, 0x5D, 0xCC, 0xBE, 0x2F,
344 0xE0, 0x71, 0x03, 0x92, 0xE7, 0x76, 0x04, 0x95,
345 0xEE, 0x7F, 0x0D, 0x9C, 0xE9, 0x78, 0x0A, 0x9B,
346 0xFC, 0x6D, 0x1F, 0x8E, 0xFB, 0x6A, 0x18, 0x89,
347 0xF2, 0x63, 0x11, 0x80, 0xF5, 0x64, 0x16, 0x87,
348 0xD8, 0x49, 0x3B, 0xAA, 0xDF, 0x4E, 0x3C, 0xAD,
349 0xD6, 0x47, 0x35, 0xA4, 0xD1, 0x40, 0x32, 0xA3,
350 0xC4, 0x55, 0x27, 0xB6, 0xC3, 0x52, 0x20, 0xB1,
351 0xCA, 0x5B, 0x29, 0xB8, 0xCD, 0x5C, 0x2E, 0xBF,
352 0x90, 0x01, 0x73, 0xE2, 0x97, 0x06, 0x74, 0xE5,
353 0x9E, 0x0F, 0x7D, 0xEC, 0x99, 0x08, 0x7A, 0xEB,
354 0x8C, 0x1D, 0x6F, 0xFE, 0x8B, 0x1A, 0x68, 0xF9,
355 0x82, 0x13, 0x61, 0xF0, 0x85, 0x14, 0x66, 0xF7,
356 0xA8, 0x39, 0x4B, 0xDA, 0xAF, 0x3E, 0x4C, 0xDD,
357 0xA6, 0x37, 0x45, 0xD4, 0xA1, 0x30, 0x42, 0xD3,
358 0xB4, 0x25, 0x57, 0xC6, 0xB3, 0x22, 0x50, 0xC1,
359 0xBA, 0x2B, 0x59, 0xC8, 0xBD, 0x2C, 0x5E, 0xCF
360};
361
362#define INIT_FCS 0xFF
363#define GOOD_FCS 0xCF
364
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365static int gsmld_output(struct gsm_mux *gsm, u8 *data, int len);
366
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367/**
368 * gsm_fcs_add - update FCS
369 * @fcs: Current FCS
370 * @c: Next data
371 *
372 * Update the FCS to include c. Uses the algorithm in the specification
373 * notes.
374 */
375
376static inline u8 gsm_fcs_add(u8 fcs, u8 c)
377{
378 return gsm_fcs8[fcs ^ c];
379}
380
381/**
382 * gsm_fcs_add_block - update FCS for a block
383 * @fcs: Current FCS
384 * @c: buffer of data
385 * @len: length of buffer
386 *
387 * Update the FCS to include c. Uses the algorithm in the specification
388 * notes.
389 */
390
391static inline u8 gsm_fcs_add_block(u8 fcs, u8 *c, int len)
392{
393 while (len--)
394 fcs = gsm_fcs8[fcs ^ *c++];
395 return fcs;
396}
397
398/**
399 * gsm_read_ea - read a byte into an EA
400 * @val: variable holding value
724ac070 401 * @c: byte going into the EA
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402 *
403 * Processes one byte of an EA. Updates the passed variable
404 * and returns 1 if the EA is now completely read
405 */
406
407static int gsm_read_ea(unsigned int *val, u8 c)
408{
409 /* Add the next 7 bits into the value */
410 *val <<= 7;
411 *val |= c >> 1;
412 /* Was this the last byte of the EA 1 = yes*/
413 return c & EA;
414}
415
416/**
417 * gsm_encode_modem - encode modem data bits
418 * @dlci: DLCI to encode from
419 *
420 * Returns the correct GSM encoded modem status bits (6 bit field) for
421 * the current status of the DLCI and attached tty object
422 */
423
424static u8 gsm_encode_modem(const struct gsm_dlci *dlci)
425{
426 u8 modembits = 0;
427 /* FC is true flow control not modem bits */
428 if (dlci->throttled)
429 modembits |= MDM_FC;
430 if (dlci->modem_tx & TIOCM_DTR)
431 modembits |= MDM_RTC;
432 if (dlci->modem_tx & TIOCM_RTS)
433 modembits |= MDM_RTR;
434 if (dlci->modem_tx & TIOCM_RI)
435 modembits |= MDM_IC;
436 if (dlci->modem_tx & TIOCM_CD)
437 modembits |= MDM_DV;
438 return modembits;
439}
440
441/**
442 * gsm_print_packet - display a frame for debug
443 * @hdr: header to print before decode
444 * @addr: address EA from the frame
445 * @cr: C/R bit from the frame
446 * @control: control including PF bit
447 * @data: following data bytes
448 * @dlen: length of data
449 *
450 * Displays a packet in human readable format for debugging purposes. The
451 * style is based on amateur radio LAP-B dump display.
452 */
453
454static void gsm_print_packet(const char *hdr, int addr, int cr,
455 u8 control, const u8 *data, int dlen)
456{
457 if (!(debug & 1))
458 return;
459
5f9a31d6 460 pr_info("%s %d) %c: ", hdr, addr, "RC"[cr]);
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461
462 switch (control & ~PF) {
463 case SABM:
5f9a31d6 464 pr_cont("SABM");
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465 break;
466 case UA:
5f9a31d6 467 pr_cont("UA");
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468 break;
469 case DISC:
5f9a31d6 470 pr_cont("DISC");
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471 break;
472 case DM:
5f9a31d6 473 pr_cont("DM");
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474 break;
475 case UI:
5f9a31d6 476 pr_cont("UI");
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477 break;
478 case UIH:
5f9a31d6 479 pr_cont("UIH");
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480 break;
481 default:
482 if (!(control & 0x01)) {
5f9a31d6 483 pr_cont("I N(S)%d N(R)%d",
47fdd641 484 (control & 0x0E) >> 1, (control & 0xE0) >> 5);
e1eaea46 485 } else switch (control & 0x0F) {
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486 case RR:
487 pr_cont("RR(%d)", (control & 0xE0) >> 5);
488 break;
489 case RNR:
490 pr_cont("RNR(%d)", (control & 0xE0) >> 5);
491 break;
492 case REJ:
493 pr_cont("REJ(%d)", (control & 0xE0) >> 5);
494 break;
495 default:
496 pr_cont("[%02X]", control);
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497 }
498 }
499
500 if (control & PF)
5f9a31d6 501 pr_cont("(P)");
e1eaea46 502 else
5f9a31d6 503 pr_cont("(F)");
e1eaea46 504
57626ff1 505 print_hex_dump_bytes("", DUMP_PREFIX_NONE, data, dlen);
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506}
507
508
509/*
510 * Link level transmission side
511 */
512
513/**
514 * gsm_stuff_packet - bytestuff a packet
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515 * @input: input buffer
516 * @output: output buffer
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517 * @len: length of input
518 *
519 * Expand a buffer by bytestuffing it. The worst case size change
520 * is doubling and the caller is responsible for handing out
521 * suitable sized buffers.
522 */
523
524static int gsm_stuff_frame(const u8 *input, u8 *output, int len)
525{
526 int olen = 0;
527 while (len--) {
528 if (*input == GSM1_SOF || *input == GSM1_ESCAPE
529 || *input == XON || *input == XOFF) {
530 *output++ = GSM1_ESCAPE;
531 *output++ = *input++ ^ GSM1_ESCAPE_BITS;
532 olen++;
533 } else
534 *output++ = *input++;
535 olen++;
536 }
537 return olen;
538}
539
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540/**
541 * gsm_send - send a control frame
542 * @gsm: our GSM mux
543 * @addr: address for control frame
544 * @cr: command/response bit
545 * @control: control byte including PF bit
546 *
547 * Format up and transmit a control frame. These do not go via the
548 * queueing logic as they should be transmitted ahead of data when
549 * they are needed.
550 *
551 * FIXME: Lock versus data TX path
552 */
553
554static void gsm_send(struct gsm_mux *gsm, int addr, int cr, int control)
555{
556 int len;
557 u8 cbuf[10];
558 u8 ibuf[3];
559
560 switch (gsm->encoding) {
561 case 0:
562 cbuf[0] = GSM0_SOF;
563 cbuf[1] = (addr << 2) | (cr << 1) | EA;
564 cbuf[2] = control;
565 cbuf[3] = EA; /* Length of data = 0 */
566 cbuf[4] = 0xFF - gsm_fcs_add_block(INIT_FCS, cbuf + 1, 3);
567 cbuf[5] = GSM0_SOF;
568 len = 6;
569 break;
570 case 1:
571 case 2:
572 /* Control frame + packing (but not frame stuffing) in mode 1 */
573 ibuf[0] = (addr << 2) | (cr << 1) | EA;
574 ibuf[1] = control;
575 ibuf[2] = 0xFF - gsm_fcs_add_block(INIT_FCS, ibuf, 2);
576 /* Stuffing may double the size worst case */
577 len = gsm_stuff_frame(ibuf, cbuf + 1, 3);
578 /* Now add the SOF markers */
579 cbuf[0] = GSM1_SOF;
580 cbuf[len + 1] = GSM1_SOF;
581 /* FIXME: we can omit the lead one in many cases */
582 len += 2;
583 break;
584 default:
585 WARN_ON(1);
586 return;
587 }
a579767c 588 gsmld_output(gsm, cbuf, len);
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589 gsm_print_packet("-->", addr, cr, control, NULL, 0);
590}
591
592/**
593 * gsm_response - send a control response
594 * @gsm: our GSM mux
595 * @addr: address for control frame
596 * @control: control byte including PF bit
597 *
598 * Format up and transmit a link level response frame.
599 */
600
601static inline void gsm_response(struct gsm_mux *gsm, int addr, int control)
602{
603 gsm_send(gsm, addr, 0, control);
604}
605
606/**
607 * gsm_command - send a control command
608 * @gsm: our GSM mux
609 * @addr: address for control frame
610 * @control: control byte including PF bit
611 *
612 * Format up and transmit a link level command frame.
613 */
614
615static inline void gsm_command(struct gsm_mux *gsm, int addr, int control)
616{
617 gsm_send(gsm, addr, 1, control);
618}
619
620/* Data transmission */
621
622#define HDR_LEN 6 /* ADDR CTRL [LEN.2] DATA FCS */
623
624/**
625 * gsm_data_alloc - allocate data frame
626 * @gsm: GSM mux
627 * @addr: DLCI address
628 * @len: length excluding header and FCS
629 * @ctrl: control byte
630 *
631 * Allocate a new data buffer for sending frames with data. Space is left
632 * at the front for header bytes but that is treated as an implementation
633 * detail and not for the high level code to use
634 */
635
636static struct gsm_msg *gsm_data_alloc(struct gsm_mux *gsm, u8 addr, int len,
637 u8 ctrl)
638{
639 struct gsm_msg *m = kmalloc(sizeof(struct gsm_msg) + len + HDR_LEN,
640 GFP_ATOMIC);
641 if (m == NULL)
642 return NULL;
643 m->data = m->buffer + HDR_LEN - 1; /* Allow for FCS */
644 m->len = len;
645 m->addr = addr;
646 m->ctrl = ctrl;
b4338e1e 647 INIT_LIST_HEAD(&m->list);
e1eaea46
AC
648 return m;
649}
650
651/**
652 * gsm_data_kick - poke the queue
653 * @gsm: GSM Mux
b410e35d 654 * @dlci: DLCI sending the data
e1eaea46
AC
655 *
656 * The tty device has called us to indicate that room has appeared in
657 * the transmit queue. Ram more data into the pipe if we have any
c01af4fe
FB
658 * If we have been flow-stopped by a CMD_FCOFF, then we can only
659 * send messages on DLCI0 until CMD_FCON
e1eaea46
AC
660 *
661 * FIXME: lock against link layer control transmissions
662 */
663
01dbb362 664static void gsm_data_kick(struct gsm_mux *gsm, struct gsm_dlci *dlci)
e1eaea46 665{
b4338e1e 666 struct gsm_msg *msg, *nmsg;
e1eaea46 667 int len;
e1eaea46 668
b4338e1e
RG
669 list_for_each_entry_safe(msg, nmsg, &gsm->tx_list, list) {
670 if (gsm->constipated && msg->addr)
c01af4fe 671 continue;
e1eaea46
AC
672 if (gsm->encoding != 0) {
673 gsm->txframe[0] = GSM1_SOF;
674 len = gsm_stuff_frame(msg->data,
675 gsm->txframe + 1, msg->len);
676 gsm->txframe[len + 1] = GSM1_SOF;
677 len += 2;
678 } else {
679 gsm->txframe[0] = GSM0_SOF;
680 memcpy(gsm->txframe + 1 , msg->data, msg->len);
681 gsm->txframe[msg->len + 1] = GSM0_SOF;
682 len = msg->len + 2;
683 }
684
0a77c4f9
JP
685 if (debug & 4)
686 print_hex_dump_bytes("gsm_data_kick: ",
687 DUMP_PREFIX_OFFSET,
688 gsm->txframe, len);
a579767c 689 if (gsmld_output(gsm, gsm->txframe, len) < 0)
e1eaea46
AC
690 break;
691 /* FIXME: Can eliminate one SOF in many more cases */
e1eaea46 692 gsm->tx_bytes -= msg->len;
c01af4fe 693
b4338e1e
RG
694 list_del(&msg->list);
695 kfree(msg);
01dbb362
GC
696
697 if (dlci) {
698 tty_port_tty_wakeup(&dlci->port);
699 } else {
700 int i = 0;
701
4dd31f1f
GC
702 for (i = 0; i < NUM_DLCI; i++)
703 if (gsm->dlci[i])
704 tty_port_tty_wakeup(&gsm->dlci[i]->port);
01dbb362 705 }
e1eaea46
AC
706 }
707}
708
709/**
710 * __gsm_data_queue - queue a UI or UIH frame
711 * @dlci: DLCI sending the data
712 * @msg: message queued
713 *
714 * Add data to the transmit queue and try and get stuff moving
715 * out of the mux tty if not already doing so. The Caller must hold
716 * the gsm tx lock.
717 */
718
719static void __gsm_data_queue(struct gsm_dlci *dlci, struct gsm_msg *msg)
720{
721 struct gsm_mux *gsm = dlci->gsm;
722 u8 *dp = msg->data;
723 u8 *fcs = dp + msg->len;
724
725 /* Fill in the header */
726 if (gsm->encoding == 0) {
727 if (msg->len < 128)
728 *--dp = (msg->len << 1) | EA;
729 else {
be7a7411
KM
730 *--dp = (msg->len >> 7); /* bits 7 - 15 */
731 *--dp = (msg->len & 127) << 1; /* bits 0 - 6 */
e1eaea46
AC
732 }
733 }
734
735 *--dp = msg->ctrl;
736 if (gsm->initiator)
737 *--dp = (msg->addr << 2) | 2 | EA;
738 else
739 *--dp = (msg->addr << 2) | EA;
740 *fcs = gsm_fcs_add_block(INIT_FCS, dp , msg->data - dp);
741 /* Ugly protocol layering violation */
742 if (msg->ctrl == UI || msg->ctrl == (UI|PF))
743 *fcs = gsm_fcs_add_block(*fcs, msg->data, msg->len);
744 *fcs = 0xFF - *fcs;
745
746 gsm_print_packet("Q> ", msg->addr, gsm->initiator, msg->ctrl,
747 msg->data, msg->len);
748
749 /* Move the header back and adjust the length, also allow for the FCS
750 now tacked on the end */
751 msg->len += (msg->data - dp) + 1;
752 msg->data = dp;
753
754 /* Add to the actual output queue */
b4338e1e 755 list_add_tail(&msg->list, &gsm->tx_list);
e1eaea46 756 gsm->tx_bytes += msg->len;
01dbb362 757 gsm_data_kick(gsm, dlci);
e1eaea46
AC
758}
759
760/**
761 * gsm_data_queue - queue a UI or UIH frame
762 * @dlci: DLCI sending the data
763 * @msg: message queued
764 *
765 * Add data to the transmit queue and try and get stuff moving
766 * out of the mux tty if not already doing so. Take the
767 * the gsm tx lock and dlci lock.
768 */
769
770static void gsm_data_queue(struct gsm_dlci *dlci, struct gsm_msg *msg)
771{
772 unsigned long flags;
773 spin_lock_irqsave(&dlci->gsm->tx_lock, flags);
774 __gsm_data_queue(dlci, msg);
775 spin_unlock_irqrestore(&dlci->gsm->tx_lock, flags);
776}
777
778/**
779 * gsm_dlci_data_output - try and push data out of a DLCI
780 * @gsm: mux
781 * @dlci: the DLCI to pull data from
782 *
783 * Pull data from a DLCI and send it into the transmit queue if there
784 * is data. Keep to the MRU of the mux. This path handles the usual tty
785 * interface which is a byte stream with optional modem data.
786 *
787 * Caller must hold the tx_lock of the mux.
788 */
789
790static int gsm_dlci_data_output(struct gsm_mux *gsm, struct gsm_dlci *dlci)
791{
792 struct gsm_msg *msg;
793 u8 *dp;
268e526b 794 int len, total_size, size;
e1eaea46
AC
795 int h = dlci->adaption - 1;
796
268e526b 797 total_size = 0;
f3c909b4 798 while (1) {
036bca1f 799 len = kfifo_len(&dlci->fifo);
268e526b
MK
800 if (len == 0)
801 return total_size;
802
803 /* MTU/MRU count only the data bits */
804 if (len > gsm->mtu)
805 len = gsm->mtu;
806
807 size = len + h;
808
809 msg = gsm_data_alloc(gsm, dlci->addr, size, gsm->ftype);
810 /* FIXME: need a timer or something to kick this so it can't
811 get stuck with no work outstanding and no buffer free */
812 if (msg == NULL)
813 return -ENOMEM;
814 dp = msg->data;
815 switch (dlci->adaption) {
816 case 1: /* Unstructured */
817 break;
f3c909b4
AI
818 case 2: /* Unstructed with modem bits.
819 Always one byte as we never send inline break data */
268e526b
MK
820 *dp++ = gsm_encode_modem(dlci);
821 break;
822 }
036bca1f 823 WARN_ON(kfifo_out_locked(&dlci->fifo, dp , len, &dlci->lock) != len);
268e526b
MK
824 __gsm_data_queue(dlci, msg);
825 total_size += size;
e1eaea46 826 }
e1eaea46 827 /* Bytes of data we used up */
268e526b 828 return total_size;
e1eaea46
AC
829}
830
831/**
832 * gsm_dlci_data_output_framed - try and push data out of a DLCI
833 * @gsm: mux
834 * @dlci: the DLCI to pull data from
835 *
836 * Pull data from a DLCI and send it into the transmit queue if there
837 * is data. Keep to the MRU of the mux. This path handles framed data
838 * queued as skbuffs to the DLCI.
839 *
840 * Caller must hold the tx_lock of the mux.
841 */
842
843static int gsm_dlci_data_output_framed(struct gsm_mux *gsm,
844 struct gsm_dlci *dlci)
845{
846 struct gsm_msg *msg;
847 u8 *dp;
848 int len, size;
849 int last = 0, first = 0;
850 int overhead = 0;
851
852 /* One byte per frame is used for B/F flags */
853 if (dlci->adaption == 4)
854 overhead = 1;
855
856 /* dlci->skb is locked by tx_lock */
857 if (dlci->skb == NULL) {
88ed2a60 858 dlci->skb = skb_dequeue_tail(&dlci->skb_list);
e1eaea46
AC
859 if (dlci->skb == NULL)
860 return 0;
861 first = 1;
862 }
863 len = dlci->skb->len + overhead;
864
865 /* MTU/MRU count only the data bits */
866 if (len > gsm->mtu) {
867 if (dlci->adaption == 3) {
868 /* Over long frame, bin it */
329e5678 869 dev_kfree_skb_any(dlci->skb);
e1eaea46
AC
870 dlci->skb = NULL;
871 return 0;
872 }
873 len = gsm->mtu;
874 } else
875 last = 1;
876
877 size = len + overhead;
878 msg = gsm_data_alloc(gsm, dlci->addr, size, gsm->ftype);
879
880 /* FIXME: need a timer or something to kick this so it can't
881 get stuck with no work outstanding and no buffer free */
88ed2a60
RG
882 if (msg == NULL) {
883 skb_queue_tail(&dlci->skb_list, dlci->skb);
884 dlci->skb = NULL;
e1eaea46 885 return -ENOMEM;
88ed2a60 886 }
e1eaea46
AC
887 dp = msg->data;
888
889 if (dlci->adaption == 4) { /* Interruptible framed (Packetised Data) */
890 /* Flag byte to carry the start/end info */
891 *dp++ = last << 7 | first << 6 | 1; /* EA */
892 len--;
893 }
57f2104f
RG
894 memcpy(dp, dlci->skb->data, len);
895 skb_pull(dlci->skb, len);
e1eaea46 896 __gsm_data_queue(dlci, msg);
bcd5abe2 897 if (last) {
329e5678 898 dev_kfree_skb_any(dlci->skb);
e1eaea46 899 dlci->skb = NULL;
bcd5abe2 900 }
e1eaea46
AC
901 return size;
902}
903
904/**
905 * gsm_dlci_data_sweep - look for data to send
906 * @gsm: the GSM mux
907 *
908 * Sweep the GSM mux channels in priority order looking for ones with
909 * data to send. We could do with optimising this scan a bit. We aim
910 * to fill the queue totally or up to TX_THRESH_HI bytes. Once we hit
911 * TX_THRESH_LO we get called again
912 *
913 * FIXME: We should round robin between groups and in theory you can
914 * renegotiate DLCI priorities with optional stuff. Needs optimising.
915 */
916
917static void gsm_dlci_data_sweep(struct gsm_mux *gsm)
918{
919 int len;
920 /* Priority ordering: We should do priority with RR of the groups */
921 int i = 1;
e1eaea46 922
e1eaea46
AC
923 while (i < NUM_DLCI) {
924 struct gsm_dlci *dlci;
925
926 if (gsm->tx_bytes > TX_THRESH_HI)
927 break;
928 dlci = gsm->dlci[i];
929 if (dlci == NULL || dlci->constipated) {
930 i++;
931 continue;
932 }
bcd5abe2 933 if (dlci->adaption < 3 && !dlci->net)
e1eaea46
AC
934 len = gsm_dlci_data_output(gsm, dlci);
935 else
936 len = gsm_dlci_data_output_framed(gsm, dlci);
937 if (len < 0)
e73790a5 938 break;
e1eaea46
AC
939 /* DLCI empty - try the next */
940 if (len == 0)
941 i++;
942 }
e1eaea46
AC
943}
944
945/**
946 * gsm_dlci_data_kick - transmit if possible
947 * @dlci: DLCI to kick
948 *
949 * Transmit data from this DLCI if the queue is empty. We can't rely on
950 * a tty wakeup except when we filled the pipe so we need to fire off
951 * new data ourselves in other cases.
952 */
953
954static void gsm_dlci_data_kick(struct gsm_dlci *dlci)
955{
956 unsigned long flags;
192b6041 957 int sweep;
e1eaea46 958
f3c909b4 959 if (dlci->constipated)
c01af4fe 960 return;
c01af4fe 961
e1eaea46
AC
962 spin_lock_irqsave(&dlci->gsm->tx_lock, flags);
963 /* If we have nothing running then we need to fire up */
192b6041 964 sweep = (dlci->gsm->tx_bytes < TX_THRESH_LO);
bcd5abe2
RG
965 if (dlci->gsm->tx_bytes == 0) {
966 if (dlci->net)
967 gsm_dlci_data_output_framed(dlci->gsm, dlci);
968 else
969 gsm_dlci_data_output(dlci->gsm, dlci);
192b6041
RG
970 }
971 if (sweep)
f3c909b4 972 gsm_dlci_data_sweep(dlci->gsm);
e1eaea46
AC
973 spin_unlock_irqrestore(&dlci->gsm->tx_lock, flags);
974}
975
976/*
977 * Control message processing
978 */
979
980
981/**
982 * gsm_control_reply - send a response frame to a control
983 * @gsm: gsm channel
984 * @cmd: the command to use
985 * @data: data to follow encoded info
986 * @dlen: length of data
987 *
988 * Encode up and queue a UI/UIH frame containing our response.
989 */
990
4feb7a4a 991static void gsm_control_reply(struct gsm_mux *gsm, int cmd, const u8 *data,
e1eaea46
AC
992 int dlen)
993{
994 struct gsm_msg *msg;
995 msg = gsm_data_alloc(gsm, 0, dlen + 2, gsm->ftype);
093d8046
KM
996 if (msg == NULL)
997 return;
e1eaea46
AC
998 msg->data[0] = (cmd & 0xFE) << 1 | EA; /* Clear C/R */
999 msg->data[1] = (dlen << 1) | EA;
1000 memcpy(msg->data + 2, data, dlen);
1001 gsm_data_queue(gsm->dlci[0], msg);
1002}
1003
1004/**
1005 * gsm_process_modem - process received modem status
1006 * @tty: virtual tty bound to the DLCI
1007 * @dlci: DLCI to affect
1008 * @modem: modem bits (full EA)
b410e35d 1009 * @clen: command length
e1eaea46
AC
1010 *
1011 * Used when a modem control message or line state inline in adaption
1012 * layer 2 is processed. Sort out the local modem state and throttles
1013 */
1014
1015static void gsm_process_modem(struct tty_struct *tty, struct gsm_dlci *dlci,
7263287a 1016 u32 modem, int clen)
e1eaea46
AC
1017{
1018 int mlines = 0;
7263287a 1019 u8 brk = 0;
c01af4fe 1020 int fc;
7263287a
RG
1021
1022 /* The modem status command can either contain one octet (v.24 signals)
1023 or two octets (v.24 signals + break signals). The length field will
1024 either be 2 or 3 respectively. This is specified in section
1025 5.4.6.3.7 of the 27.010 mux spec. */
1026
1027 if (clen == 2)
1028 modem = modem & 0x7f;
1029 else {
1030 brk = modem & 0x7f;
1031 modem = (modem >> 7) & 0x7f;
c01af4fe 1032 }
e1eaea46
AC
1033
1034 /* Flow control/ready to communicate */
c01af4fe
FB
1035 fc = (modem & MDM_FC) || !(modem & MDM_RTR);
1036 if (fc && !dlci->constipated) {
e1eaea46 1037 /* Need to throttle our output on this device */
7a9ed9c0 1038 dlci->constipated = true;
c01af4fe 1039 } else if (!fc && dlci->constipated) {
7a9ed9c0 1040 dlci->constipated = false;
e1eaea46
AC
1041 gsm_dlci_data_kick(dlci);
1042 }
c01af4fe 1043
e1eaea46 1044 /* Map modem bits */
c01af4fe
FB
1045 if (modem & MDM_RTC)
1046 mlines |= TIOCM_DSR | TIOCM_DTR;
e1eaea46
AC
1047 if (modem & MDM_RTR)
1048 mlines |= TIOCM_RTS | TIOCM_CTS;
1049 if (modem & MDM_IC)
1050 mlines |= TIOCM_RI;
1051 if (modem & MDM_DV)
1052 mlines |= TIOCM_CD;
1053
1054 /* Carrier drop -> hangup */
1055 if (tty) {
1056 if ((mlines & TIOCM_CD) == 0 && (dlci->modem_rx & TIOCM_CD))
9db276f8 1057 if (!C_CLOCAL(tty))
e1eaea46 1058 tty_hangup(tty);
e1eaea46 1059 }
92a19f9c
JS
1060 if (brk & 0x01)
1061 tty_insert_flip_char(&dlci->port, 0, TTY_BREAK);
e1eaea46
AC
1062 dlci->modem_rx = mlines;
1063}
1064
1065/**
1066 * gsm_control_modem - modem status received
1067 * @gsm: GSM channel
1068 * @data: data following command
1069 * @clen: command length
1070 *
1071 * We have received a modem status control message. This is used by
1072 * the GSM mux protocol to pass virtual modem line status and optionally
1073 * to indicate break signals. Unpack it, convert to Linux representation
1074 * and if need be stuff a break message down the tty.
1075 */
1076
4feb7a4a 1077static void gsm_control_modem(struct gsm_mux *gsm, const u8 *data, int clen)
e1eaea46
AC
1078{
1079 unsigned int addr = 0;
1080 unsigned int modem = 0;
3ac06b90 1081 unsigned int brk = 0;
e1eaea46
AC
1082 struct gsm_dlci *dlci;
1083 int len = clen;
4feb7a4a 1084 const u8 *dp = data;
e1eaea46
AC
1085 struct tty_struct *tty;
1086
1087 while (gsm_read_ea(&addr, *dp++) == 0) {
1088 len--;
1089 if (len == 0)
1090 return;
1091 }
1092 /* Must be at least one byte following the EA */
1093 len--;
1094 if (len <= 0)
1095 return;
1096
1097 addr >>= 1;
1098 /* Closed port, or invalid ? */
1099 if (addr == 0 || addr >= NUM_DLCI || gsm->dlci[addr] == NULL)
1100 return;
1101 dlci = gsm->dlci[addr];
1102
1103 while (gsm_read_ea(&modem, *dp++) == 0) {
1104 len--;
1105 if (len == 0)
1106 return;
1107 }
3ac06b90
LP
1108 len--;
1109 if (len > 0) {
1110 while (gsm_read_ea(&brk, *dp++) == 0) {
1111 len--;
1112 if (len == 0)
1113 return;
1114 }
1115 modem <<= 7;
1116 modem |= (brk & 0x7f);
1117 }
e1eaea46 1118 tty = tty_port_tty_get(&dlci->port);
7263287a 1119 gsm_process_modem(tty, dlci, modem, clen);
e1eaea46
AC
1120 if (tty) {
1121 tty_wakeup(tty);
1122 tty_kref_put(tty);
1123 }
1124 gsm_control_reply(gsm, CMD_MSC, data, clen);
1125}
1126
1127/**
1128 * gsm_control_rls - remote line status
1129 * @gsm: GSM channel
1130 * @data: data bytes
1131 * @clen: data length
1132 *
1133 * The modem sends us a two byte message on the control channel whenever
1134 * it wishes to send us an error state from the virtual link. Stuff
1135 * this into the uplink tty if present
1136 */
1137
4feb7a4a 1138static void gsm_control_rls(struct gsm_mux *gsm, const u8 *data, int clen)
e1eaea46 1139{
92a19f9c 1140 struct tty_port *port;
f3c909b4 1141 unsigned int addr = 0;
e1eaea46
AC
1142 u8 bits;
1143 int len = clen;
4feb7a4a 1144 const u8 *dp = data;
e1eaea46
AC
1145
1146 while (gsm_read_ea(&addr, *dp++) == 0) {
1147 len--;
1148 if (len == 0)
1149 return;
1150 }
1151 /* Must be at least one byte following ea */
1152 len--;
1153 if (len <= 0)
1154 return;
1155 addr >>= 1;
1156 /* Closed port, or invalid ? */
1157 if (addr == 0 || addr >= NUM_DLCI || gsm->dlci[addr] == NULL)
1158 return;
1159 /* No error ? */
1160 bits = *dp;
1161 if ((bits & 1) == 0)
1162 return;
e1eaea46 1163
92a19f9c
JS
1164 port = &gsm->dlci[addr]->port;
1165
1166 if (bits & 2)
1167 tty_insert_flip_char(port, 0, TTY_OVERRUN);
1168 if (bits & 4)
1169 tty_insert_flip_char(port, 0, TTY_PARITY);
1170 if (bits & 8)
1171 tty_insert_flip_char(port, 0, TTY_FRAME);
1172
2e124b4a
JS
1173 tty_flip_buffer_push(port);
1174
e1eaea46
AC
1175 gsm_control_reply(gsm, CMD_RLS, data, clen);
1176}
1177
1178static void gsm_dlci_begin_close(struct gsm_dlci *dlci);
1179
1180/**
1181 * gsm_control_message - DLCI 0 control processing
1182 * @gsm: our GSM mux
1183 * @command: the command EA
1184 * @data: data beyond the command/length EAs
1185 * @clen: length
1186 *
1187 * Input processor for control messages from the other end of the link.
1188 * Processes the incoming request and queues a response frame or an
1189 * NSC response if not supported
1190 */
1191
1192static void gsm_control_message(struct gsm_mux *gsm, unsigned int command,
4feb7a4a 1193 const u8 *data, int clen)
e1eaea46
AC
1194{
1195 u8 buf[1];
5e44708f
RG
1196 unsigned long flags;
1197
e1eaea46
AC
1198 switch (command) {
1199 case CMD_CLD: {
1200 struct gsm_dlci *dlci = gsm->dlci[0];
1201 /* Modem wishes to close down */
1202 if (dlci) {
5677fcf3
JS
1203 dlci->dead = true;
1204 gsm->dead = true;
e1eaea46
AC
1205 gsm_dlci_begin_close(dlci);
1206 }
1207 }
1208 break;
1209 case CMD_TEST:
1210 /* Modem wishes to test, reply with the data */
1211 gsm_control_reply(gsm, CMD_TEST, data, clen);
1212 break;
1213 case CMD_FCON:
e1eaea46 1214 /* Modem can accept data again */
7a9ed9c0 1215 gsm->constipated = false;
c01af4fe 1216 gsm_control_reply(gsm, CMD_FCON, NULL, 0);
e1eaea46 1217 /* Kick the link in case it is idling */
5e44708f 1218 spin_lock_irqsave(&gsm->tx_lock, flags);
01dbb362 1219 gsm_data_kick(gsm, NULL);
5e44708f 1220 spin_unlock_irqrestore(&gsm->tx_lock, flags);
e1eaea46 1221 break;
c01af4fe
FB
1222 case CMD_FCOFF:
1223 /* Modem wants us to STFU */
7a9ed9c0 1224 gsm->constipated = true;
c01af4fe
FB
1225 gsm_control_reply(gsm, CMD_FCOFF, NULL, 0);
1226 break;
e1eaea46
AC
1227 case CMD_MSC:
1228 /* Out of band modem line change indicator for a DLCI */
1229 gsm_control_modem(gsm, data, clen);
1230 break;
1231 case CMD_RLS:
1232 /* Out of band error reception for a DLCI */
1233 gsm_control_rls(gsm, data, clen);
1234 break;
1235 case CMD_PSC:
1236 /* Modem wishes to enter power saving state */
1237 gsm_control_reply(gsm, CMD_PSC, NULL, 0);
1238 break;
1239 /* Optional unsupported commands */
1240 case CMD_PN: /* Parameter negotiation */
25985edc
LDM
1241 case CMD_RPN: /* Remote port negotiation */
1242 case CMD_SNC: /* Service negotiation command */
e1eaea46
AC
1243 default:
1244 /* Reply to bad commands with an NSC */
1245 buf[0] = command;
1246 gsm_control_reply(gsm, CMD_NSC, buf, 1);
1247 break;
1248 }
1249}
1250
1251/**
1252 * gsm_control_response - process a response to our control
1253 * @gsm: our GSM mux
1254 * @command: the command (response) EA
1255 * @data: data beyond the command/length EA
1256 * @clen: length
1257 *
1258 * Process a response to an outstanding command. We only allow a single
1259 * control message in flight so this is fairly easy. All the clean up
1260 * is done by the caller, we just update the fields, flag it as done
1261 * and return
1262 */
1263
1264static void gsm_control_response(struct gsm_mux *gsm, unsigned int command,
4feb7a4a 1265 const u8 *data, int clen)
e1eaea46
AC
1266{
1267 struct gsm_control *ctrl;
1268 unsigned long flags;
1269
1270 spin_lock_irqsave(&gsm->control_lock, flags);
1271
1272 ctrl = gsm->pending_cmd;
1273 /* Does the reply match our command */
1274 command |= 1;
1275 if (ctrl != NULL && (command == ctrl->cmd || command == CMD_NSC)) {
1276 /* Our command was replied to, kill the retry timer */
1277 del_timer(&gsm->t2_timer);
1278 gsm->pending_cmd = NULL;
1279 /* Rejected by the other end */
1280 if (command == CMD_NSC)
1281 ctrl->error = -EOPNOTSUPP;
1282 ctrl->done = 1;
1283 wake_up(&gsm->event);
1284 }
1285 spin_unlock_irqrestore(&gsm->control_lock, flags);
1286}
1287
1288/**
5f9a31d6 1289 * gsm_control_transmit - send control packet
e1eaea46
AC
1290 * @gsm: gsm mux
1291 * @ctrl: frame to send
1292 *
1293 * Send out a pending control command (called under control lock)
1294 */
1295
1296static void gsm_control_transmit(struct gsm_mux *gsm, struct gsm_control *ctrl)
1297{
ed43b47b 1298 struct gsm_msg *msg = gsm_data_alloc(gsm, 0, ctrl->len + 1, gsm->ftype);
e1eaea46
AC
1299 if (msg == NULL)
1300 return;
1301 msg->data[0] = (ctrl->cmd << 1) | 2 | EA; /* command */
1302 memcpy(msg->data + 1, ctrl->data, ctrl->len);
1303 gsm_data_queue(gsm->dlci[0], msg);
1304}
1305
1306/**
1307 * gsm_control_retransmit - retransmit a control frame
724ac070 1308 * @t: timer contained in our gsm object
e1eaea46
AC
1309 *
1310 * Called off the T2 timer expiry in order to retransmit control frames
1311 * that have been lost in the system somewhere. The control_lock protects
1312 * us from colliding with another sender or a receive completion event.
1313 * In that situation the timer may still occur in a small window but
1314 * gsm->pending_cmd will be NULL and we just let the timer expire.
1315 */
1316
e99e88a9 1317static void gsm_control_retransmit(struct timer_list *t)
e1eaea46 1318{
e99e88a9 1319 struct gsm_mux *gsm = from_timer(gsm, t, t2_timer);
e1eaea46
AC
1320 struct gsm_control *ctrl;
1321 unsigned long flags;
1322 spin_lock_irqsave(&gsm->control_lock, flags);
1323 ctrl = gsm->pending_cmd;
1324 if (ctrl) {
1325 gsm->cretries--;
1326 if (gsm->cretries == 0) {
1327 gsm->pending_cmd = NULL;
1328 ctrl->error = -ETIMEDOUT;
1329 ctrl->done = 1;
1330 spin_unlock_irqrestore(&gsm->control_lock, flags);
1331 wake_up(&gsm->event);
1332 return;
1333 }
1334 gsm_control_transmit(gsm, ctrl);
1335 mod_timer(&gsm->t2_timer, jiffies + gsm->t2 * HZ / 100);
1336 }
1337 spin_unlock_irqrestore(&gsm->control_lock, flags);
1338}
1339
1340/**
1341 * gsm_control_send - send a control frame on DLCI 0
1342 * @gsm: the GSM channel
1343 * @command: command to send including CR bit
1344 * @data: bytes of data (must be kmalloced)
724ac070 1345 * @clen: length of the block to send
e1eaea46
AC
1346 *
1347 * Queue and dispatch a control command. Only one command can be
1348 * active at a time. In theory more can be outstanding but the matching
1349 * gets really complicated so for now stick to one outstanding.
1350 */
1351
1352static struct gsm_control *gsm_control_send(struct gsm_mux *gsm,
1353 unsigned int command, u8 *data, int clen)
1354{
1355 struct gsm_control *ctrl = kzalloc(sizeof(struct gsm_control),
1356 GFP_KERNEL);
1357 unsigned long flags;
1358 if (ctrl == NULL)
1359 return NULL;
1360retry:
1361 wait_event(gsm->event, gsm->pending_cmd == NULL);
1362 spin_lock_irqsave(&gsm->control_lock, flags);
1363 if (gsm->pending_cmd != NULL) {
1364 spin_unlock_irqrestore(&gsm->control_lock, flags);
1365 goto retry;
1366 }
1367 ctrl->cmd = command;
1368 ctrl->data = data;
1369 ctrl->len = clen;
1370 gsm->pending_cmd = ctrl;
e9ec2254
TL
1371
1372 /* If DLCI0 is in ADM mode skip retries, it won't respond */
1373 if (gsm->dlci[0]->mode == DLCI_MODE_ADM)
1374 gsm->cretries = 1;
1375 else
1376 gsm->cretries = gsm->n2;
1377
e1eaea46
AC
1378 mod_timer(&gsm->t2_timer, jiffies + gsm->t2 * HZ / 100);
1379 gsm_control_transmit(gsm, ctrl);
1380 spin_unlock_irqrestore(&gsm->control_lock, flags);
1381 return ctrl;
1382}
1383
1384/**
1385 * gsm_control_wait - wait for a control to finish
1386 * @gsm: GSM mux
1387 * @control: control we are waiting on
1388 *
1389 * Waits for the control to complete or time out. Frees any used
1390 * resources and returns 0 for success, or an error if the remote
1391 * rejected or ignored the request.
1392 */
1393
1394static int gsm_control_wait(struct gsm_mux *gsm, struct gsm_control *control)
1395{
1396 int err;
1397 wait_event(gsm->event, control->done == 1);
1398 err = control->error;
1399 kfree(control);
1400 return err;
1401}
1402
1403
1404/*
1405 * DLCI level handling: Needs krefs
1406 */
1407
1408/*
1409 * State transitions and timers
1410 */
1411
1412/**
1413 * gsm_dlci_close - a DLCI has closed
1414 * @dlci: DLCI that closed
1415 *
1416 * Perform processing when moving a DLCI into closed state. If there
1417 * is an attached tty this is hung up
1418 */
1419
1420static void gsm_dlci_close(struct gsm_dlci *dlci)
1421{
1422 del_timer(&dlci->t1);
1423 if (debug & 8)
5f9a31d6 1424 pr_debug("DLCI %d goes closed.\n", dlci->addr);
e1eaea46
AC
1425 dlci->state = DLCI_CLOSED;
1426 if (dlci->addr != 0) {
aa27a094 1427 tty_port_tty_hangup(&dlci->port, false);
036bca1f 1428 kfifo_reset(&dlci->fifo);
e1eaea46 1429 } else
5677fcf3 1430 dlci->gsm->dead = true;
e1eaea46
AC
1431 wake_up(&dlci->gsm->event);
1432 /* A DLCI 0 close is a MUX termination so we need to kick that
1433 back to userspace somehow */
1434}
1435
1436/**
1437 * gsm_dlci_open - a DLCI has opened
1438 * @dlci: DLCI that opened
1439 *
1440 * Perform processing when moving a DLCI into open state.
1441 */
1442
1443static void gsm_dlci_open(struct gsm_dlci *dlci)
1444{
1445 /* Note that SABM UA .. SABM UA first UA lost can mean that we go
1446 open -> open */
1447 del_timer(&dlci->t1);
1448 /* This will let a tty open continue */
1449 dlci->state = DLCI_OPEN;
1450 if (debug & 8)
5f9a31d6 1451 pr_debug("DLCI %d goes open.\n", dlci->addr);
e1eaea46
AC
1452 wake_up(&dlci->gsm->event);
1453}
1454
1455/**
1456 * gsm_dlci_t1 - T1 timer expiry
724ac070 1457 * @t: timer contained in the DLCI that opened
e1eaea46
AC
1458 *
1459 * The T1 timer handles retransmits of control frames (essentially of
1460 * SABM and DISC). We resend the command until the retry count runs out
1461 * in which case an opening port goes back to closed and a closing port
1462 * is simply put into closed state (any further frames from the other
1463 * end will get a DM response)
ea3d8465
TL
1464 *
1465 * Some control dlci can stay in ADM mode with other dlci working just
1466 * fine. In that case we can just keep the control dlci open after the
1467 * DLCI_OPENING retries time out.
e1eaea46
AC
1468 */
1469
e99e88a9 1470static void gsm_dlci_t1(struct timer_list *t)
e1eaea46 1471{
e99e88a9 1472 struct gsm_dlci *dlci = from_timer(dlci, t, t1);
e1eaea46
AC
1473 struct gsm_mux *gsm = dlci->gsm;
1474
1475 switch (dlci->state) {
1476 case DLCI_OPENING:
1477 dlci->retries--;
1478 if (dlci->retries) {
1479 gsm_command(dlci->gsm, dlci->addr, SABM|PF);
1480 mod_timer(&dlci->t1, jiffies + gsm->t1 * HZ / 100);
ea3d8465
TL
1481 } else if (!dlci->addr && gsm->control == (DM | PF)) {
1482 if (debug & 8)
1483 pr_info("DLCI %d opening in ADM mode.\n",
1484 dlci->addr);
e9ec2254 1485 dlci->mode = DLCI_MODE_ADM;
ea3d8465
TL
1486 gsm_dlci_open(dlci);
1487 } else {
e1eaea46 1488 gsm_dlci_close(dlci);
ea3d8465
TL
1489 }
1490
e1eaea46
AC
1491 break;
1492 case DLCI_CLOSING:
1493 dlci->retries--;
1494 if (dlci->retries) {
1495 gsm_command(dlci->gsm, dlci->addr, DISC|PF);
1496 mod_timer(&dlci->t1, jiffies + gsm->t1 * HZ / 100);
1497 } else
1498 gsm_dlci_close(dlci);
1499 break;
72ae8cc1
JS
1500 default:
1501 pr_debug("%s: unhandled state: %d\n", __func__, dlci->state);
1502 break;
e1eaea46
AC
1503 }
1504}
1505
1506/**
1507 * gsm_dlci_begin_open - start channel open procedure
1508 * @dlci: DLCI to open
1509 *
1510 * Commence opening a DLCI from the Linux side. We issue SABM messages
ea3d8465
TL
1511 * to the modem which should then reply with a UA or ADM, at which point
1512 * we will move into open state. Opening is done asynchronously with retry
e1eaea46
AC
1513 * running off timers and the responses.
1514 */
1515
1516static void gsm_dlci_begin_open(struct gsm_dlci *dlci)
1517{
1518 struct gsm_mux *gsm = dlci->gsm;
1519 if (dlci->state == DLCI_OPEN || dlci->state == DLCI_OPENING)
1520 return;
1521 dlci->retries = gsm->n2;
1522 dlci->state = DLCI_OPENING;
1523 gsm_command(dlci->gsm, dlci->addr, SABM|PF);
1524 mod_timer(&dlci->t1, jiffies + gsm->t1 * HZ / 100);
1525}
1526
1527/**
1528 * gsm_dlci_begin_close - start channel open procedure
1529 * @dlci: DLCI to open
1530 *
1531 * Commence closing a DLCI from the Linux side. We issue DISC messages
1532 * to the modem which should then reply with a UA, at which point we
1533 * will move into closed state. Closing is done asynchronously with retry
1534 * off timers. We may also receive a DM reply from the other end which
1535 * indicates the channel was already closed.
1536 */
1537
1538static void gsm_dlci_begin_close(struct gsm_dlci *dlci)
1539{
1540 struct gsm_mux *gsm = dlci->gsm;
1541 if (dlci->state == DLCI_CLOSED || dlci->state == DLCI_CLOSING)
1542 return;
1543 dlci->retries = gsm->n2;
1544 dlci->state = DLCI_CLOSING;
1545 gsm_command(dlci->gsm, dlci->addr, DISC|PF);
1546 mod_timer(&dlci->t1, jiffies + gsm->t1 * HZ / 100);
1547}
1548
1549/**
1550 * gsm_dlci_data - data arrived
1551 * @dlci: channel
1552 * @data: block of bytes received
724ac070 1553 * @clen: length of received block
e1eaea46
AC
1554 *
1555 * A UI or UIH frame has arrived which contains data for a channel
1556 * other than the control channel. If the relevant virtual tty is
1557 * open we shovel the bits down it, if not we drop them.
1558 */
1559
4feb7a4a 1560static void gsm_dlci_data(struct gsm_dlci *dlci, const u8 *data, int clen)
e1eaea46
AC
1561{
1562 /* krefs .. */
1563 struct tty_port *port = &dlci->port;
2e124b4a 1564 struct tty_struct *tty;
e1eaea46 1565 unsigned int modem = 0;
7263287a 1566 int len = clen;
e1eaea46
AC
1567
1568 if (debug & 16)
2e124b4a
JS
1569 pr_debug("%d bytes for tty\n", len);
1570 switch (dlci->adaption) {
1571 /* Unsupported types */
3e913eeb 1572 case 4: /* Packetised interruptible data */
2e124b4a 1573 break;
3e913eeb 1574 case 3: /* Packetised uininterruptible voice/data */
2e124b4a 1575 break;
3e913eeb 1576 case 2: /* Asynchronous serial with line state in each frame */
2e124b4a
JS
1577 while (gsm_read_ea(&modem, *data++) == 0) {
1578 len--;
1579 if (len == 0)
1580 return;
1581 }
1582 tty = tty_port_tty_get(port);
1583 if (tty) {
7263287a 1584 gsm_process_modem(tty, dlci, modem, clen);
2e124b4a 1585 tty_kref_put(tty);
e1eaea46 1586 }
df561f66 1587 fallthrough;
3e913eeb 1588 case 1: /* Line state will go via DLCI 0 controls only */
2e124b4a
JS
1589 default:
1590 tty_insert_flip_string(port, data, len);
1591 tty_flip_buffer_push(port);
e1eaea46
AC
1592 }
1593}
1594
1595/**
1596 * gsm_dlci_control - data arrived on control channel
1597 * @dlci: channel
1598 * @data: block of bytes received
1599 * @len: length of received block
1600 *
1601 * A UI or UIH frame has arrived which contains data for DLCI 0 the
1602 * control channel. This should contain a command EA followed by
1603 * control data bytes. The command EA contains a command/response bit
1604 * and we divide up the work accordingly.
1605 */
1606
4feb7a4a 1607static void gsm_dlci_command(struct gsm_dlci *dlci, const u8 *data, int len)
e1eaea46
AC
1608{
1609 /* See what command is involved */
1610 unsigned int command = 0;
1611 while (len-- > 0) {
1612 if (gsm_read_ea(&command, *data++) == 1) {
1613 int clen = *data++;
1614 len--;
1615 /* FIXME: this is properly an EA */
1616 clen >>= 1;
1617 /* Malformed command ? */
1618 if (clen > len)
1619 return;
1620 if (command & 1)
1621 gsm_control_message(dlci->gsm, command,
1622 data, clen);
1623 else
1624 gsm_control_response(dlci->gsm, command,
1625 data, clen);
1626 return;
1627 }
1628 }
1629}
1630
1631/*
1632 * Allocate/Free DLCI channels
1633 */
1634
1635/**
1636 * gsm_dlci_alloc - allocate a DLCI
1637 * @gsm: GSM mux
1638 * @addr: address of the DLCI
1639 *
1640 * Allocate and install a new DLCI object into the GSM mux.
1641 *
1642 * FIXME: review locking races
1643 */
1644
1645static struct gsm_dlci *gsm_dlci_alloc(struct gsm_mux *gsm, int addr)
1646{
1647 struct gsm_dlci *dlci = kzalloc(sizeof(struct gsm_dlci), GFP_ATOMIC);
1648 if (dlci == NULL)
1649 return NULL;
1650 spin_lock_init(&dlci->lock);
bcd5abe2 1651 mutex_init(&dlci->mutex);
036bca1f 1652 if (kfifo_alloc(&dlci->fifo, 4096, GFP_KERNEL) < 0) {
e1eaea46
AC
1653 kfree(dlci);
1654 return NULL;
1655 }
1656
1657 skb_queue_head_init(&dlci->skb_list);
e99e88a9 1658 timer_setup(&dlci->t1, gsm_dlci_t1, 0);
e1eaea46
AC
1659 tty_port_init(&dlci->port);
1660 dlci->port.ops = &gsm_port_ops;
1661 dlci->gsm = gsm;
1662 dlci->addr = addr;
1663 dlci->adaption = gsm->adaption;
1664 dlci->state = DLCI_CLOSED;
1665 if (addr)
1666 dlci->data = gsm_dlci_data;
1667 else
1668 dlci->data = gsm_dlci_command;
1669 gsm->dlci[addr] = dlci;
1670 return dlci;
1671}
1672
1673/**
6ab8fba7 1674 * gsm_dlci_free - free DLCI
724ac070 1675 * @port: tty port for DLCI to free
6ab8fba7
RG
1676 *
1677 * Free up a DLCI.
1678 *
1679 * Can sleep.
1680 */
9a8e62bc 1681static void gsm_dlci_free(struct tty_port *port)
6ab8fba7 1682{
9a8e62bc 1683 struct gsm_dlci *dlci = container_of(port, struct gsm_dlci, port);
6ab8fba7
RG
1684
1685 del_timer_sync(&dlci->t1);
1686 dlci->gsm->dlci[dlci->addr] = NULL;
036bca1f 1687 kfifo_free(&dlci->fifo);
6ab8fba7 1688 while ((dlci->skb = skb_dequeue(&dlci->skb_list)))
329e5678 1689 dev_kfree_skb(dlci->skb);
6ab8fba7
RG
1690 kfree(dlci);
1691}
1692
1693static inline void dlci_get(struct gsm_dlci *dlci)
1694{
9a8e62bc 1695 tty_port_get(&dlci->port);
6ab8fba7
RG
1696}
1697
1698static inline void dlci_put(struct gsm_dlci *dlci)
1699{
9a8e62bc 1700 tty_port_put(&dlci->port);
6ab8fba7
RG
1701}
1702
4d9b1090
DB
1703static void gsm_destroy_network(struct gsm_dlci *dlci);
1704
6ab8fba7
RG
1705/**
1706 * gsm_dlci_release - release DLCI
e1eaea46
AC
1707 * @dlci: DLCI to destroy
1708 *
6ab8fba7
RG
1709 * Release a DLCI. Actual free is deferred until either
1710 * mux is closed or tty is closed - whichever is last.
e1eaea46
AC
1711 *
1712 * Can sleep.
1713 */
6ab8fba7 1714static void gsm_dlci_release(struct gsm_dlci *dlci)
e1eaea46
AC
1715{
1716 struct tty_struct *tty = tty_port_tty_get(&dlci->port);
1717 if (tty) {
4d9b1090
DB
1718 mutex_lock(&dlci->mutex);
1719 gsm_destroy_network(dlci);
1720 mutex_unlock(&dlci->mutex);
1721
7030082a 1722 tty_hangup(tty);
be706572 1723
4d9b1090 1724 tty_port_tty_set(&dlci->port, NULL);
e1eaea46
AC
1725 tty_kref_put(tty);
1726 }
4d9b1090 1727 dlci->state = DLCI_CLOSED;
6ab8fba7 1728 dlci_put(dlci);
e1eaea46
AC
1729}
1730
e1eaea46
AC
1731/*
1732 * LAPBish link layer logic
1733 */
1734
1735/**
1736 * gsm_queue - a GSM frame is ready to process
1737 * @gsm: pointer to our gsm mux
1738 *
1739 * At this point in time a frame has arrived and been demangled from
1740 * the line encoding. All the differences between the encodings have
1741 * been handled below us and the frame is unpacked into the structures.
1742 * The fcs holds the header FCS but any data FCS must be added here.
1743 */
1744
1745static void gsm_queue(struct gsm_mux *gsm)
1746{
1747 struct gsm_dlci *dlci;
1748 u8 cr;
1749 int address;
1750 /* We have to sneak a look at the packet body to do the FCS.
1751 A somewhat layering violation in the spec */
1752
1753 if ((gsm->control & ~PF) == UI)
1754 gsm->fcs = gsm_fcs_add_block(gsm->fcs, gsm->buf, gsm->len);
f3c909b4
AI
1755 if (gsm->encoding == 0) {
1756 /* WARNING: gsm->received_fcs is used for
1757 gsm->encoding = 0 only.
1758 In this case it contain the last piece of data
1759 required to generate final CRC */
9db4e438
MK
1760 gsm->fcs = gsm_fcs_add(gsm->fcs, gsm->received_fcs);
1761 }
e1eaea46
AC
1762 if (gsm->fcs != GOOD_FCS) {
1763 gsm->bad_fcs++;
1764 if (debug & 4)
5f9a31d6 1765 pr_debug("BAD FCS %02x\n", gsm->fcs);
e1eaea46
AC
1766 return;
1767 }
1768 address = gsm->address >> 1;
1769 if (address >= NUM_DLCI)
1770 goto invalid;
1771
1772 cr = gsm->address & 1; /* C/R bit */
1773
1774 gsm_print_packet("<--", address, cr, gsm->control, gsm->buf, gsm->len);
1775
1776 cr ^= 1 - gsm->initiator; /* Flip so 1 always means command */
1777 dlci = gsm->dlci[address];
1778
1779 switch (gsm->control) {
1780 case SABM|PF:
1781 if (cr == 0)
1782 goto invalid;
1783 if (dlci == NULL)
1784 dlci = gsm_dlci_alloc(gsm, address);
1785 if (dlci == NULL)
1786 return;
1787 if (dlci->dead)
1788 gsm_response(gsm, address, DM);
1789 else {
1790 gsm_response(gsm, address, UA);
1791 gsm_dlci_open(dlci);
1792 }
1793 break;
1794 case DISC|PF:
1795 if (cr == 0)
1796 goto invalid;
1797 if (dlci == NULL || dlci->state == DLCI_CLOSED) {
1798 gsm_response(gsm, address, DM);
1799 return;
1800 }
1801 /* Real close complete */
1802 gsm_response(gsm, address, UA);
1803 gsm_dlci_close(dlci);
1804 break;
1805 case UA:
1806 case UA|PF:
1807 if (cr == 0 || dlci == NULL)
1808 break;
1809 switch (dlci->state) {
1810 case DLCI_CLOSING:
1811 gsm_dlci_close(dlci);
1812 break;
1813 case DLCI_OPENING:
1814 gsm_dlci_open(dlci);
1815 break;
72ae8cc1
JS
1816 default:
1817 pr_debug("%s: unhandled state: %d\n", __func__,
1818 dlci->state);
1819 break;
e1eaea46
AC
1820 }
1821 break;
1822 case DM: /* DM can be valid unsolicited */
1823 case DM|PF:
1824 if (cr)
1825 goto invalid;
1826 if (dlci == NULL)
1827 return;
1828 gsm_dlci_close(dlci);
1829 break;
1830 case UI:
1831 case UI|PF:
1832 case UIH:
1833 case UIH|PF:
1834#if 0
1835 if (cr)
1836 goto invalid;
1837#endif
1838 if (dlci == NULL || dlci->state != DLCI_OPEN) {
1839 gsm_command(gsm, address, DM|PF);
1840 return;
1841 }
1842 dlci->data(dlci, gsm->buf, gsm->len);
1843 break;
1844 default:
1845 goto invalid;
1846 }
1847 return;
1848invalid:
1849 gsm->malformed++;
1850 return;
1851}
1852
1853
1854/**
1855 * gsm0_receive - perform processing for non-transparency
1856 * @gsm: gsm data for this ldisc instance
1857 * @c: character
1858 *
1859 * Receive bytes in gsm mode 0
1860 */
1861
1862static void gsm0_receive(struct gsm_mux *gsm, unsigned char c)
1863{
c2f2f000
AC
1864 unsigned int len;
1865
e1eaea46
AC
1866 switch (gsm->state) {
1867 case GSM_SEARCH: /* SOF marker */
1868 if (c == GSM0_SOF) {
1869 gsm->state = GSM_ADDRESS;
1870 gsm->address = 0;
1871 gsm->len = 0;
1872 gsm->fcs = INIT_FCS;
1873 }
c2f2f000
AC
1874 break;
1875 case GSM_ADDRESS: /* Address EA */
e1eaea46
AC
1876 gsm->fcs = gsm_fcs_add(gsm->fcs, c);
1877 if (gsm_read_ea(&gsm->address, c))
1878 gsm->state = GSM_CONTROL;
1879 break;
1880 case GSM_CONTROL: /* Control Byte */
1881 gsm->fcs = gsm_fcs_add(gsm->fcs, c);
1882 gsm->control = c;
c2f2f000 1883 gsm->state = GSM_LEN0;
e1eaea46 1884 break;
c2f2f000 1885 case GSM_LEN0: /* Length EA */
e1eaea46
AC
1886 gsm->fcs = gsm_fcs_add(gsm->fcs, c);
1887 if (gsm_read_ea(&gsm->len, c)) {
1888 if (gsm->len > gsm->mru) {
1889 gsm->bad_size++;
1890 gsm->state = GSM_SEARCH;
1891 break;
1892 }
1893 gsm->count = 0;
c2f2f000
AC
1894 if (!gsm->len)
1895 gsm->state = GSM_FCS;
1896 else
1897 gsm->state = GSM_DATA;
1898 break;
e1eaea46 1899 }
c2f2f000
AC
1900 gsm->state = GSM_LEN1;
1901 break;
1902 case GSM_LEN1:
1903 gsm->fcs = gsm_fcs_add(gsm->fcs, c);
1904 len = c;
1905 gsm->len |= len << 7;
1906 if (gsm->len > gsm->mru) {
1907 gsm->bad_size++;
1908 gsm->state = GSM_SEARCH;
1909 break;
e1eaea46 1910 }
c2f2f000
AC
1911 gsm->count = 0;
1912 if (!gsm->len)
1913 gsm->state = GSM_FCS;
1914 else
1915 gsm->state = GSM_DATA;
e1eaea46
AC
1916 break;
1917 case GSM_DATA: /* Data */
1918 gsm->buf[gsm->count++] = c;
1919 if (gsm->count == gsm->len)
1920 gsm->state = GSM_FCS;
1921 break;
1922 case GSM_FCS: /* FCS follows the packet */
c2f2f000 1923 gsm->received_fcs = c;
e1eaea46 1924 gsm_queue(gsm);
c2f2f000
AC
1925 gsm->state = GSM_SSOF;
1926 break;
1927 case GSM_SSOF:
1928 if (c == GSM0_SOF) {
1929 gsm->state = GSM_SEARCH;
1930 break;
1931 }
e1eaea46 1932 break;
329aa6e6
JS
1933 default:
1934 pr_debug("%s: unhandled state: %d\n", __func__, gsm->state);
1935 break;
e1eaea46
AC
1936 }
1937}
1938
1939/**
c2f2f000 1940 * gsm1_receive - perform processing for non-transparency
e1eaea46
AC
1941 * @gsm: gsm data for this ldisc instance
1942 * @c: character
1943 *
1944 * Receive bytes in mode 1 (Advanced option)
1945 */
1946
1947static void gsm1_receive(struct gsm_mux *gsm, unsigned char c)
1948{
1949 if (c == GSM1_SOF) {
1950 /* EOF is only valid in frame if we have got to the data state
1951 and received at least one byte (the FCS) */
1952 if (gsm->state == GSM_DATA && gsm->count) {
1953 /* Extract the FCS */
1954 gsm->count--;
1955 gsm->fcs = gsm_fcs_add(gsm->fcs, gsm->buf[gsm->count]);
1956 gsm->len = gsm->count;
1957 gsm_queue(gsm);
1958 gsm->state = GSM_START;
1959 return;
1960 }
1961 /* Any partial frame was a runt so go back to start */
1962 if (gsm->state != GSM_START) {
1963 gsm->malformed++;
1964 gsm->state = GSM_START;
1965 }
1966 /* A SOF in GSM_START means we are still reading idling or
1967 framing bytes */
1968 return;
1969 }
1970
1971 if (c == GSM1_ESCAPE) {
c50704bd 1972 gsm->escape = true;
e1eaea46
AC
1973 return;
1974 }
1975
1976 /* Only an unescaped SOF gets us out of GSM search */
1977 if (gsm->state == GSM_SEARCH)
1978 return;
1979
1980 if (gsm->escape) {
1981 c ^= GSM1_ESCAPE_BITS;
c50704bd 1982 gsm->escape = false;
e1eaea46
AC
1983 }
1984 switch (gsm->state) {
1985 case GSM_START: /* First byte after SOF */
1986 gsm->address = 0;
1987 gsm->state = GSM_ADDRESS;
1988 gsm->fcs = INIT_FCS;
df561f66 1989 fallthrough;
e1eaea46
AC
1990 case GSM_ADDRESS: /* Address continuation */
1991 gsm->fcs = gsm_fcs_add(gsm->fcs, c);
1992 if (gsm_read_ea(&gsm->address, c))
1993 gsm->state = GSM_CONTROL;
1994 break;
1995 case GSM_CONTROL: /* Control Byte */
1996 gsm->fcs = gsm_fcs_add(gsm->fcs, c);
1997 gsm->control = c;
1998 gsm->count = 0;
1999 gsm->state = GSM_DATA;
2000 break;
2001 case GSM_DATA: /* Data */
5f9a31d6 2002 if (gsm->count > gsm->mru) { /* Allow one for the FCS */
e1eaea46
AC
2003 gsm->state = GSM_OVERRUN;
2004 gsm->bad_size++;
2005 } else
2006 gsm->buf[gsm->count++] = c;
2007 break;
2008 case GSM_OVERRUN: /* Over-long - eg a dropped SOF */
2009 break;
329aa6e6
JS
2010 default:
2011 pr_debug("%s: unhandled state: %d\n", __func__, gsm->state);
2012 break;
e1eaea46
AC
2013 }
2014}
2015
2016/**
2017 * gsm_error - handle tty error
2018 * @gsm: ldisc data
2019 * @data: byte received (may be invalid)
2020 * @flag: error received
2021 *
2022 * Handle an error in the receipt of data for a frame. Currently we just
2023 * go back to hunting for a SOF.
2024 *
2025 * FIXME: better diagnostics ?
2026 */
2027
2028static void gsm_error(struct gsm_mux *gsm,
2029 unsigned char data, unsigned char flag)
2030{
2031 gsm->state = GSM_SEARCH;
2032 gsm->io_error++;
2033}
2034
71e07791
SH
2035static int gsm_disconnect(struct gsm_mux *gsm)
2036{
2037 struct gsm_dlci *dlci = gsm->dlci[0];
2038 struct gsm_control *gc;
2039
2040 if (!dlci)
2041 return 0;
2042
2043 /* In theory disconnecting DLCI 0 is sufficient but for some
2044 modems this is apparently not the case. */
2045 gc = gsm_control_send(gsm, CMD_CLD, NULL, 0);
2046 if (gc)
2047 gsm_control_wait(gsm, gc);
2048
2049 del_timer_sync(&gsm->t2_timer);
2050 /* Now we are sure T2 has stopped */
2051
2052 gsm_dlci_begin_close(dlci);
2053 wait_event_interruptible(gsm->event,
2054 dlci->state == DLCI_CLOSED);
2055
2056 if (signal_pending(current))
2057 return -EINTR;
2058
2059 return 0;
2060}
2061
e1eaea46
AC
2062/**
2063 * gsm_cleanup_mux - generic GSM protocol cleanup
2064 * @gsm: our mux
2065 *
2066 * Clean up the bits of the mux which are the same for all framing
2067 * protocols. Remove the mux from the mux table, stop all the timers
2068 * and then shut down each device hanging up the channels as we go.
2069 */
2070
54af5836 2071static void gsm_cleanup_mux(struct gsm_mux *gsm)
e1eaea46
AC
2072{
2073 int i;
2074 struct gsm_dlci *dlci = gsm->dlci[0];
329e5678 2075 struct gsm_msg *txq, *ntxq;
e1eaea46 2076
5677fcf3 2077 gsm->dead = true;
e1eaea46
AC
2078
2079 spin_lock(&gsm_mux_lock);
2080 for (i = 0; i < MAX_MUX; i++) {
2081 if (gsm_mux[i] == gsm) {
2082 gsm_mux[i] = NULL;
2083 break;
2084 }
2085 }
2086 spin_unlock(&gsm_mux_lock);
d175feca
JS
2087 /* open failed before registering => nothing to do */
2088 if (i == MAX_MUX)
2089 return;
e1eaea46
AC
2090
2091 del_timer_sync(&gsm->t2_timer);
2092 /* Now we are sure T2 has stopped */
71e07791 2093 if (dlci)
5677fcf3 2094 dlci->dead = true;
71e07791 2095
e1eaea46 2096 /* Free up any link layer users */
dfabf7ff 2097 mutex_lock(&gsm->mutex);
e1eaea46
AC
2098 for (i = 0; i < NUM_DLCI; i++)
2099 if (gsm->dlci[i])
6ab8fba7 2100 gsm_dlci_release(gsm->dlci[i]);
dfabf7ff 2101 mutex_unlock(&gsm->mutex);
e1eaea46 2102 /* Now wipe the queues */
b4338e1e 2103 list_for_each_entry_safe(txq, ntxq, &gsm->tx_list, list)
e1eaea46 2104 kfree(txq);
b4338e1e 2105 INIT_LIST_HEAD(&gsm->tx_list);
e1eaea46 2106}
e1eaea46
AC
2107
2108/**
2109 * gsm_activate_mux - generic GSM setup
2110 * @gsm: our mux
2111 *
2112 * Set up the bits of the mux which are the same for all framing
2113 * protocols. Add the mux to the mux table so it can be opened and
2114 * finally kick off connecting to DLCI 0 on the modem.
2115 */
2116
54af5836 2117static int gsm_activate_mux(struct gsm_mux *gsm)
e1eaea46
AC
2118{
2119 struct gsm_dlci *dlci;
2120 int i = 0;
2121
e99e88a9 2122 timer_setup(&gsm->t2_timer, gsm_control_retransmit, 0);
e1eaea46
AC
2123 init_waitqueue_head(&gsm->event);
2124 spin_lock_init(&gsm->control_lock);
2125 spin_lock_init(&gsm->tx_lock);
2126
2127 if (gsm->encoding == 0)
2128 gsm->receive = gsm0_receive;
2129 else
2130 gsm->receive = gsm1_receive;
e1eaea46
AC
2131
2132 spin_lock(&gsm_mux_lock);
2133 for (i = 0; i < MAX_MUX; i++) {
2134 if (gsm_mux[i] == NULL) {
d50f6dca 2135 gsm->num = i;
e1eaea46
AC
2136 gsm_mux[i] = gsm;
2137 break;
2138 }
2139 }
2140 spin_unlock(&gsm_mux_lock);
2141 if (i == MAX_MUX)
2142 return -EBUSY;
2143
2144 dlci = gsm_dlci_alloc(gsm, 0);
2145 if (dlci == NULL)
2146 return -ENOMEM;
5677fcf3 2147 gsm->dead = false; /* Tty opens are now permissible */
e1eaea46
AC
2148 return 0;
2149}
e1eaea46
AC
2150
2151/**
2152 * gsm_free_mux - free up a mux
724ac070 2153 * @gsm: mux to free
e1eaea46 2154 *
6ab8fba7 2155 * Dispose of allocated resources for a dead mux
e1eaea46 2156 */
54af5836 2157static void gsm_free_mux(struct gsm_mux *gsm)
e1eaea46
AC
2158{
2159 kfree(gsm->txframe);
2160 kfree(gsm->buf);
2161 kfree(gsm);
2162}
e1eaea46 2163
6ab8fba7
RG
2164/**
2165 * gsm_free_muxr - free up a mux
724ac070 2166 * @ref: kreference to the mux to free
6ab8fba7
RG
2167 *
2168 * Dispose of allocated resources for a dead mux
2169 */
2170static void gsm_free_muxr(struct kref *ref)
2171{
2172 struct gsm_mux *gsm = container_of(ref, struct gsm_mux, ref);
2173 gsm_free_mux(gsm);
2174}
2175
2176static inline void mux_get(struct gsm_mux *gsm)
2177{
2178 kref_get(&gsm->ref);
2179}
2180
2181static inline void mux_put(struct gsm_mux *gsm)
2182{
2183 kref_put(&gsm->ref, gsm_free_muxr);
2184}
2185
43a9e710
MH
2186static inline unsigned int mux_num_to_base(struct gsm_mux *gsm)
2187{
2188 return gsm->num * NUM_DLCI;
2189}
2190
2191static inline unsigned int mux_line_to_num(unsigned int line)
2192{
2193 return line / NUM_DLCI;
2194}
2195
e1eaea46
AC
2196/**
2197 * gsm_alloc_mux - allocate a mux
2198 *
2199 * Creates a new mux ready for activation.
2200 */
2201
54af5836 2202static struct gsm_mux *gsm_alloc_mux(void)
e1eaea46
AC
2203{
2204 struct gsm_mux *gsm = kzalloc(sizeof(struct gsm_mux), GFP_KERNEL);
2205 if (gsm == NULL)
2206 return NULL;
2207 gsm->buf = kmalloc(MAX_MRU + 1, GFP_KERNEL);
2208 if (gsm->buf == NULL) {
2209 kfree(gsm);
2210 return NULL;
2211 }
2212 gsm->txframe = kmalloc(2 * MAX_MRU + 2, GFP_KERNEL);
2213 if (gsm->txframe == NULL) {
2214 kfree(gsm->buf);
2215 kfree(gsm);
2216 return NULL;
2217 }
2218 spin_lock_init(&gsm->lock);
dfabf7ff 2219 mutex_init(&gsm->mutex);
6ab8fba7 2220 kref_init(&gsm->ref);
b4338e1e 2221 INIT_LIST_HEAD(&gsm->tx_list);
e1eaea46
AC
2222
2223 gsm->t1 = T1;
2224 gsm->t2 = T2;
2225 gsm->n2 = N2;
2226 gsm->ftype = UIH;
e1eaea46
AC
2227 gsm->adaption = 1;
2228 gsm->encoding = 1;
2229 gsm->mru = 64; /* Default to encoding 1 so these should be 64 */
2230 gsm->mtu = 64;
5677fcf3 2231 gsm->dead = true; /* Avoid early tty opens */
e1eaea46
AC
2232
2233 return gsm;
2234}
e1eaea46 2235
33841040
TL
2236static void gsm_copy_config_values(struct gsm_mux *gsm,
2237 struct gsm_config *c)
2238{
2239 memset(c, 0, sizeof(*c));
2240 c->adaption = gsm->adaption;
2241 c->encapsulation = gsm->encoding;
2242 c->initiator = gsm->initiator;
2243 c->t1 = gsm->t1;
2244 c->t2 = gsm->t2;
2245 c->t3 = 0; /* Not supported */
2246 c->n2 = gsm->n2;
2247 if (gsm->ftype == UIH)
2248 c->i = 1;
2249 else
2250 c->i = 2;
2251 pr_debug("Ftype %d i %d\n", gsm->ftype, c->i);
2252 c->mru = gsm->mru;
2253 c->mtu = gsm->mtu;
2254 c->k = 0;
2255}
2256
2257static int gsm_config(struct gsm_mux *gsm, struct gsm_config *c)
2258{
2259 int need_close = 0;
2260 int need_restart = 0;
2261
2262 /* Stuff we don't support yet - UI or I frame transport, windowing */
2263 if ((c->adaption != 1 && c->adaption != 2) || c->k)
2264 return -EOPNOTSUPP;
2265 /* Check the MRU/MTU range looks sane */
2266 if (c->mru > MAX_MRU || c->mtu > MAX_MTU || c->mru < 8 || c->mtu < 8)
2267 return -EINVAL;
2268 if (c->n2 < 3)
2269 return -EINVAL;
2270 if (c->encapsulation > 1) /* Basic, advanced, no I */
2271 return -EINVAL;
2272 if (c->initiator > 1)
2273 return -EINVAL;
2274 if (c->i == 0 || c->i > 2) /* UIH and UI only */
2275 return -EINVAL;
2276 /*
2277 * See what is needed for reconfiguration
2278 */
2279
2280 /* Timing fields */
2281 if (c->t1 != 0 && c->t1 != gsm->t1)
2282 need_restart = 1;
2283 if (c->t2 != 0 && c->t2 != gsm->t2)
2284 need_restart = 1;
2285 if (c->encapsulation != gsm->encoding)
2286 need_restart = 1;
2287 if (c->adaption != gsm->adaption)
2288 need_restart = 1;
2289 /* Requires care */
2290 if (c->initiator != gsm->initiator)
2291 need_close = 1;
2292 if (c->mru != gsm->mru)
2293 need_restart = 1;
2294 if (c->mtu != gsm->mtu)
2295 need_restart = 1;
2296
2297 /*
2298 * Close down what is needed, restart and initiate the new
2299 * configuration
2300 */
2301
2302 if (need_close || need_restart) {
2303 int ret;
2304
2305 ret = gsm_disconnect(gsm);
2306
2307 if (ret)
2308 return ret;
2309 }
2310 if (need_restart)
2311 gsm_cleanup_mux(gsm);
2312
2313 gsm->initiator = c->initiator;
2314 gsm->mru = c->mru;
2315 gsm->mtu = c->mtu;
2316 gsm->encoding = c->encapsulation;
2317 gsm->adaption = c->adaption;
2318 gsm->n2 = c->n2;
2319
2320 if (c->i == 1)
2321 gsm->ftype = UIH;
2322 else if (c->i == 2)
2323 gsm->ftype = UI;
2324
2325 if (c->t1)
2326 gsm->t1 = c->t1;
2327 if (c->t2)
2328 gsm->t2 = c->t2;
2329
2330 /*
2331 * FIXME: We need to separate activation/deactivation from adding
2332 * and removing from the mux array
2333 */
2334 if (need_restart)
2335 gsm_activate_mux(gsm);
2336 if (gsm->initiator && need_close)
2337 gsm_dlci_begin_open(gsm->dlci[0]);
2338 return 0;
2339}
2340
e1eaea46
AC
2341/**
2342 * gsmld_output - write to link
2343 * @gsm: our mux
2344 * @data: bytes to output
2345 * @len: size
2346 *
2347 * Write a block of data from the GSM mux to the data channel. This
2348 * will eventually be serialized from above but at the moment isn't.
2349 */
2350
2351static int gsmld_output(struct gsm_mux *gsm, u8 *data, int len)
2352{
2353 if (tty_write_room(gsm->tty) < len) {
2354 set_bit(TTY_DO_WRITE_WAKEUP, &gsm->tty->flags);
2355 return -ENOSPC;
2356 }
0a77c4f9
JP
2357 if (debug & 4)
2358 print_hex_dump_bytes("gsmld_output: ", DUMP_PREFIX_OFFSET,
2359 data, len);
e1eaea46
AC
2360 gsm->tty->ops->write(gsm->tty, data, len);
2361 return len;
2362}
2363
2364/**
2365 * gsmld_attach_gsm - mode set up
2366 * @tty: our tty structure
2367 * @gsm: our mux
2368 *
2369 * Set up the MUX for basic mode and commence connecting to the
2370 * modem. Currently called from the line discipline set up but
2371 * will need moving to an ioctl path.
2372 */
2373
2374static int gsmld_attach_gsm(struct tty_struct *tty, struct gsm_mux *gsm)
2375{
43a9e710
MH
2376 unsigned int base;
2377 int ret, i;
e1eaea46
AC
2378
2379 gsm->tty = tty_kref_get(tty);
e1eaea46
AC
2380 ret = gsm_activate_mux(gsm);
2381 if (ret != 0)
2382 tty_kref_put(gsm->tty);
d50f6dca
RG
2383 else {
2384 /* Don't register device 0 - this is the control channel and not
2385 a usable tty interface */
43a9e710 2386 base = mux_num_to_base(gsm); /* Base for this MUX */
0a360e8b
HD
2387 for (i = 1; i < NUM_DLCI; i++) {
2388 struct device *dev;
2389
2390 dev = tty_register_device(gsm_tty_driver,
2391 base + i, NULL);
2392 if (IS_ERR(dev)) {
2393 for (i--; i >= 1; i--)
2394 tty_unregister_device(gsm_tty_driver,
2395 base + i);
2396 return PTR_ERR(dev);
2397 }
2398 }
d50f6dca 2399 }
e1eaea46
AC
2400 return ret;
2401}
2402
2403
2404/**
2405 * gsmld_detach_gsm - stop doing 0710 mux
70f23fd6 2406 * @tty: tty attached to the mux
e1eaea46
AC
2407 * @gsm: mux
2408 *
2409 * Shutdown and then clean up the resources used by the line discipline
2410 */
2411
2412static void gsmld_detach_gsm(struct tty_struct *tty, struct gsm_mux *gsm)
2413{
43a9e710 2414 unsigned int base = mux_num_to_base(gsm); /* Base for this MUX */
d50f6dca 2415 int i;
d50f6dca 2416
e1eaea46 2417 WARN_ON(tty != gsm->tty);
d50f6dca
RG
2418 for (i = 1; i < NUM_DLCI; i++)
2419 tty_unregister_device(gsm_tty_driver, base + i);
e1eaea46
AC
2420 gsm_cleanup_mux(gsm);
2421 tty_kref_put(gsm->tty);
2422 gsm->tty = NULL;
2423}
2424
55db4c64
LT
2425static void gsmld_receive_buf(struct tty_struct *tty, const unsigned char *cp,
2426 char *fp, int count)
e1eaea46
AC
2427{
2428 struct gsm_mux *gsm = tty->disc_data;
82f91fe0 2429 char flags = TTY_NORMAL;
e1eaea46 2430
0a77c4f9
JP
2431 if (debug & 4)
2432 print_hex_dump_bytes("gsmld_receive: ", DUMP_PREFIX_OFFSET,
2433 cp, count);
e1eaea46 2434
b93db97e
JS
2435 for (; count; count--, cp++) {
2436 if (fp)
2437 flags = *fp++;
e1eaea46
AC
2438 switch (flags) {
2439 case TTY_NORMAL:
b93db97e 2440 gsm->receive(gsm, *cp);
e1eaea46
AC
2441 break;
2442 case TTY_OVERRUN:
2443 case TTY_BREAK:
2444 case TTY_PARITY:
2445 case TTY_FRAME:
b93db97e 2446 gsm_error(gsm, *cp, flags);
e1eaea46
AC
2447 break;
2448 default:
c01af4fe 2449 WARN_ONCE(1, "%s: unknown flag %d\n",
429b4749 2450 tty_name(tty), flags);
e1eaea46
AC
2451 break;
2452 }
2453 }
2454 /* FASYNC if needed ? */
2455 /* If clogged call tty_throttle(tty); */
2456}
2457
e1eaea46
AC
2458/**
2459 * gsmld_flush_buffer - clean input queue
2460 * @tty: terminal device
2461 *
2462 * Flush the input buffer. Called when the line discipline is
2463 * being closed, when the tty layer wants the buffer flushed (eg
2464 * at hangup).
2465 */
2466
2467static void gsmld_flush_buffer(struct tty_struct *tty)
2468{
2469}
2470
2471/**
2472 * gsmld_close - close the ldisc for this tty
2473 * @tty: device
2474 *
2475 * Called from the terminal layer when this line discipline is
2476 * being shut down, either because of a close or becsuse of a
2477 * discipline change. The function will not be called while other
2478 * ldisc methods are in progress.
2479 */
2480
2481static void gsmld_close(struct tty_struct *tty)
2482{
2483 struct gsm_mux *gsm = tty->disc_data;
2484
2485 gsmld_detach_gsm(tty, gsm);
2486
2487 gsmld_flush_buffer(tty);
2488 /* Do other clean up here */
6ab8fba7 2489 mux_put(gsm);
e1eaea46
AC
2490}
2491
2492/**
2493 * gsmld_open - open an ldisc
2494 * @tty: terminal to open
2495 *
2496 * Called when this line discipline is being attached to the
2497 * terminal device. Can sleep. Called serialized so that no
2498 * other events will occur in parallel. No further open will occur
2499 * until a close.
2500 */
2501
2502static int gsmld_open(struct tty_struct *tty)
2503{
2504 struct gsm_mux *gsm;
5a640967 2505 int ret;
e1eaea46
AC
2506
2507 if (tty->ops->write == NULL)
2508 return -EINVAL;
2509
2510 /* Attach our ldisc data */
2511 gsm = gsm_alloc_mux();
2512 if (gsm == NULL)
2513 return -ENOMEM;
2514
2515 tty->disc_data = gsm;
2516 tty->receive_room = 65536;
2517
2518 /* Attach the initial passive connection */
2519 gsm->encoding = 1;
5a640967 2520
2521 ret = gsmld_attach_gsm(tty, gsm);
2522 if (ret != 0) {
2523 gsm_cleanup_mux(gsm);
2524 mux_put(gsm);
2525 }
2526 return ret;
e1eaea46
AC
2527}
2528
2529/**
2530 * gsmld_write_wakeup - asynchronous I/O notifier
2531 * @tty: tty device
2532 *
2533 * Required for the ptys, serial driver etc. since processes
2534 * that attach themselves to the master and rely on ASYNC
2535 * IO must be woken up
2536 */
2537
2538static void gsmld_write_wakeup(struct tty_struct *tty)
2539{
2540 struct gsm_mux *gsm = tty->disc_data;
328be395 2541 unsigned long flags;
e1eaea46
AC
2542
2543 /* Queue poll */
2544 clear_bit(TTY_DO_WRITE_WAKEUP, &tty->flags);
5e44708f 2545 spin_lock_irqsave(&gsm->tx_lock, flags);
01dbb362 2546 gsm_data_kick(gsm, NULL);
328be395 2547 if (gsm->tx_bytes < TX_THRESH_LO) {
e1eaea46 2548 gsm_dlci_data_sweep(gsm);
328be395 2549 }
5e44708f 2550 spin_unlock_irqrestore(&gsm->tx_lock, flags);
e1eaea46
AC
2551}
2552
2553/**
2554 * gsmld_read - read function for tty
2555 * @tty: tty device
2556 * @file: file object
2557 * @buf: userspace buffer pointer
2558 * @nr: size of I/O
2559 *
2560 * Perform reads for the line discipline. We are guaranteed that the
2561 * line discipline will not be closed under us but we may get multiple
2562 * parallel readers and must handle this ourselves. We may also get
2563 * a hangup. Always called in user context, may sleep.
2564 *
2565 * This code must be sure never to sleep through a hangup.
2566 */
2567
2568static ssize_t gsmld_read(struct tty_struct *tty, struct file *file,
3b830a9c
LT
2569 unsigned char *buf, size_t nr,
2570 void **cookie, unsigned long offset)
e1eaea46
AC
2571{
2572 return -EOPNOTSUPP;
2573}
2574
2575/**
2576 * gsmld_write - write function for tty
2577 * @tty: tty device
2578 * @file: file object
2579 * @buf: userspace buffer pointer
2580 * @nr: size of I/O
2581 *
2582 * Called when the owner of the device wants to send a frame
2583 * itself (or some other control data). The data is transferred
2584 * as-is and must be properly framed and checksummed as appropriate
2585 * by userspace. Frames are either sent whole or not at all as this
2586 * avoids pain user side.
2587 */
2588
2589static ssize_t gsmld_write(struct tty_struct *tty, struct file *file,
2590 const unsigned char *buf, size_t nr)
2591{
2592 int space = tty_write_room(tty);
2593 if (space >= nr)
2594 return tty->ops->write(tty, buf, nr);
2595 set_bit(TTY_DO_WRITE_WAKEUP, &tty->flags);
2596 return -ENOBUFS;
2597}
2598
2599/**
2600 * gsmld_poll - poll method for N_GSM0710
2601 * @tty: terminal device
2602 * @file: file accessing it
2603 * @wait: poll table
2604 *
2605 * Called when the line discipline is asked to poll() for data or
2606 * for special events. This code is not serialized with respect to
2607 * other events save open/close.
2608 *
2609 * This code must be sure never to sleep through a hangup.
2610 * Called without the kernel lock held - fine
2611 */
2612
afc9a42b 2613static __poll_t gsmld_poll(struct tty_struct *tty, struct file *file,
e1eaea46
AC
2614 poll_table *wait)
2615{
afc9a42b 2616 __poll_t mask = 0;
e1eaea46
AC
2617 struct gsm_mux *gsm = tty->disc_data;
2618
2619 poll_wait(file, &tty->read_wait, wait);
2620 poll_wait(file, &tty->write_wait, wait);
2621 if (tty_hung_up_p(file))
a9a08845 2622 mask |= EPOLLHUP;
e1eaea46 2623 if (!tty_is_writelocked(tty) && tty_write_room(tty) > 0)
a9a08845 2624 mask |= EPOLLOUT | EPOLLWRNORM;
e1eaea46 2625 if (gsm->dead)
a9a08845 2626 mask |= EPOLLHUP;
e1eaea46
AC
2627 return mask;
2628}
2629
e1eaea46
AC
2630static int gsmld_ioctl(struct tty_struct *tty, struct file *file,
2631 unsigned int cmd, unsigned long arg)
2632{
2633 struct gsm_config c;
2634 struct gsm_mux *gsm = tty->disc_data;
a7b121b4 2635 unsigned int base;
e1eaea46
AC
2636
2637 switch (cmd) {
2638 case GSMIOC_GETCONF:
33841040 2639 gsm_copy_config_values(gsm, &c);
edd05a73 2640 if (copy_to_user((void __user *)arg, &c, sizeof(c)))
e1eaea46
AC
2641 return -EFAULT;
2642 return 0;
2643 case GSMIOC_SETCONF:
edd05a73 2644 if (copy_from_user(&c, (void __user *)arg, sizeof(c)))
e1eaea46 2645 return -EFAULT;
33841040 2646 return gsm_config(gsm, &c);
a7b121b4
MH
2647 case GSMIOC_GETFIRST:
2648 base = mux_num_to_base(gsm);
2649 return put_user(base + 1, (__u32 __user *)arg);
e1eaea46
AC
2650 default:
2651 return n_tty_ioctl_helper(tty, file, cmd, arg);
2652 }
2653}
2654
bcd5abe2
RG
2655/*
2656 * Network interface
2657 *
2658 */
2659
2660static int gsm_mux_net_open(struct net_device *net)
2661{
2662 pr_debug("%s called\n", __func__);
2663 netif_start_queue(net);
2664 return 0;
2665}
2666
2667static int gsm_mux_net_close(struct net_device *net)
2668{
2669 netif_stop_queue(net);
2670 return 0;
2671}
2672
bcd5abe2
RG
2673static void dlci_net_free(struct gsm_dlci *dlci)
2674{
2675 if (!dlci->net) {
2676 WARN_ON(1);
2677 return;
2678 }
2679 dlci->adaption = dlci->prev_adaption;
2680 dlci->data = dlci->prev_data;
2681 free_netdev(dlci->net);
2682 dlci->net = NULL;
2683}
2684static void net_free(struct kref *ref)
2685{
2686 struct gsm_mux_net *mux_net;
2687 struct gsm_dlci *dlci;
2688
2689 mux_net = container_of(ref, struct gsm_mux_net, ref);
2690 dlci = mux_net->dlci;
2691
2692 if (dlci->net) {
2693 unregister_netdev(dlci->net);
2694 dlci_net_free(dlci);
2695 }
2696}
2697
6ab8fba7
RG
2698static inline void muxnet_get(struct gsm_mux_net *mux_net)
2699{
2700 kref_get(&mux_net->ref);
2701}
2702
2703static inline void muxnet_put(struct gsm_mux_net *mux_net)
2704{
2705 kref_put(&mux_net->ref, net_free);
2706}
2707
2468b3e4 2708static netdev_tx_t gsm_mux_net_start_xmit(struct sk_buff *skb,
bcd5abe2
RG
2709 struct net_device *net)
2710{
5dbc32a8 2711 struct gsm_mux_net *mux_net = netdev_priv(net);
bcd5abe2 2712 struct gsm_dlci *dlci = mux_net->dlci;
6ab8fba7 2713 muxnet_get(mux_net);
bcd5abe2
RG
2714
2715 skb_queue_head(&dlci->skb_list, skb);
47baf1ad
TK
2716 net->stats.tx_packets++;
2717 net->stats.tx_bytes += skb->len;
bcd5abe2
RG
2718 gsm_dlci_data_kick(dlci);
2719 /* And tell the kernel when the last transmit started. */
860e9538 2720 netif_trans_update(net);
6ab8fba7 2721 muxnet_put(mux_net);
bcd5abe2
RG
2722 return NETDEV_TX_OK;
2723}
2724
2725/* called when a packet did not ack after watchdogtimeout */
0290bd29 2726static void gsm_mux_net_tx_timeout(struct net_device *net, unsigned int txqueue)
bcd5abe2
RG
2727{
2728 /* Tell syslog we are hosed. */
2729 dev_dbg(&net->dev, "Tx timed out.\n");
2730
2731 /* Update statistics */
47baf1ad 2732 net->stats.tx_errors++;
bcd5abe2
RG
2733}
2734
2735static void gsm_mux_rx_netchar(struct gsm_dlci *dlci,
4feb7a4a 2736 const unsigned char *in_buf, int size)
bcd5abe2
RG
2737{
2738 struct net_device *net = dlci->net;
2739 struct sk_buff *skb;
5dbc32a8 2740 struct gsm_mux_net *mux_net = netdev_priv(net);
6ab8fba7 2741 muxnet_get(mux_net);
bcd5abe2
RG
2742
2743 /* Allocate an sk_buff */
2744 skb = dev_alloc_skb(size + NET_IP_ALIGN);
2745 if (!skb) {
2746 /* We got no receive buffer. */
47baf1ad 2747 net->stats.rx_dropped++;
6ab8fba7 2748 muxnet_put(mux_net);
bcd5abe2
RG
2749 return;
2750 }
2751 skb_reserve(skb, NET_IP_ALIGN);
59ae1d12 2752 skb_put_data(skb, in_buf, size);
bcd5abe2
RG
2753
2754 skb->dev = net;
75406b3b 2755 skb->protocol = htons(ETH_P_IP);
bcd5abe2
RG
2756
2757 /* Ship it off to the kernel */
2758 netif_rx(skb);
2759
2760 /* update out statistics */
47baf1ad
TK
2761 net->stats.rx_packets++;
2762 net->stats.rx_bytes += size;
6ab8fba7 2763 muxnet_put(mux_net);
bcd5abe2
RG
2764 return;
2765}
2766
bcd5abe2
RG
2767static void gsm_mux_net_init(struct net_device *net)
2768{
2769 static const struct net_device_ops gsm_netdev_ops = {
2770 .ndo_open = gsm_mux_net_open,
2771 .ndo_stop = gsm_mux_net_close,
2772 .ndo_start_xmit = gsm_mux_net_start_xmit,
2773 .ndo_tx_timeout = gsm_mux_net_tx_timeout,
bcd5abe2
RG
2774 };
2775
2776 net->netdev_ops = &gsm_netdev_ops;
2777
2778 /* fill in the other fields */
2779 net->watchdog_timeo = GSM_NET_TX_TIMEOUT;
2780 net->flags = IFF_POINTOPOINT | IFF_NOARP | IFF_MULTICAST;
2781 net->type = ARPHRD_NONE;
2782 net->tx_queue_len = 10;
2783}
2784
2785
2786/* caller holds the dlci mutex */
2787static void gsm_destroy_network(struct gsm_dlci *dlci)
2788{
2789 struct gsm_mux_net *mux_net;
2790
d8ca4ecf 2791 pr_debug("destroy network interface\n");
bcd5abe2
RG
2792 if (!dlci->net)
2793 return;
5dbc32a8 2794 mux_net = netdev_priv(dlci->net);
6ab8fba7 2795 muxnet_put(mux_net);
bcd5abe2
RG
2796}
2797
2798
2799/* caller holds the dlci mutex */
2800static int gsm_create_network(struct gsm_dlci *dlci, struct gsm_netconfig *nc)
2801{
2802 char *netname;
2803 int retval = 0;
2804 struct net_device *net;
2805 struct gsm_mux_net *mux_net;
2806
2807 if (!capable(CAP_NET_ADMIN))
2808 return -EPERM;
2809
2810 /* Already in a non tty mode */
2811 if (dlci->adaption > 2)
2812 return -EBUSY;
2813
2814 if (nc->protocol != htons(ETH_P_IP))
2815 return -EPROTONOSUPPORT;
2816
2817 if (nc->adaption != 3 && nc->adaption != 4)
2818 return -EPROTONOSUPPORT;
2819
d8ca4ecf 2820 pr_debug("create network interface\n");
bcd5abe2
RG
2821
2822 netname = "gsm%d";
2823 if (nc->if_name[0] != '\0')
2824 netname = nc->if_name;
c835a677
TG
2825 net = alloc_netdev(sizeof(struct gsm_mux_net), netname,
2826 NET_NAME_UNKNOWN, gsm_mux_net_init);
bcd5abe2 2827 if (!net) {
d8ca4ecf 2828 pr_err("alloc_netdev failed\n");
bcd5abe2
RG
2829 return -ENOMEM;
2830 }
2831 net->mtu = dlci->gsm->mtu;
9c22b4a3
JW
2832 net->min_mtu = 8;
2833 net->max_mtu = dlci->gsm->mtu;
5dbc32a8 2834 mux_net = netdev_priv(net);
bcd5abe2
RG
2835 mux_net->dlci = dlci;
2836 kref_init(&mux_net->ref);
2837 strncpy(nc->if_name, net->name, IFNAMSIZ); /* return net name */
2838
2839 /* reconfigure dlci for network */
2840 dlci->prev_adaption = dlci->adaption;
2841 dlci->prev_data = dlci->data;
2842 dlci->adaption = nc->adaption;
2843 dlci->data = gsm_mux_rx_netchar;
2844 dlci->net = net;
2845
d8ca4ecf 2846 pr_debug("register netdev\n");
bcd5abe2
RG
2847 retval = register_netdev(net);
2848 if (retval) {
2849 pr_err("network register fail %d\n", retval);
2850 dlci_net_free(dlci);
2851 return retval;
2852 }
2853 return net->ifindex; /* return network index */
2854}
e1eaea46
AC
2855
2856/* Line discipline for real tty */
d3157b2c 2857static struct tty_ldisc_ops tty_ldisc_packet = {
e1eaea46 2858 .owner = THIS_MODULE,
e1eaea46
AC
2859 .name = "n_gsm",
2860 .open = gsmld_open,
2861 .close = gsmld_close,
2862 .flush_buffer = gsmld_flush_buffer,
e1eaea46
AC
2863 .read = gsmld_read,
2864 .write = gsmld_write,
2865 .ioctl = gsmld_ioctl,
2866 .poll = gsmld_poll,
2867 .receive_buf = gsmld_receive_buf,
2868 .write_wakeup = gsmld_write_wakeup
2869};
2870
2871/*
2872 * Virtual tty side
2873 */
2874
2875#define TX_SIZE 512
2876
2877static int gsmtty_modem_update(struct gsm_dlci *dlci, u8 brk)
2878{
2879 u8 modembits[5];
2880 struct gsm_control *ctrl;
2881 int len = 2;
2882
2883 if (brk)
2884 len++;
2885
2886 modembits[0] = len << 1 | EA; /* Data bytes */
2887 modembits[1] = dlci->addr << 2 | 3; /* DLCI, EA, 1 */
2888 modembits[2] = gsm_encode_modem(dlci) << 1 | EA;
2889 if (brk)
2890 modembits[3] = brk << 4 | 2 | EA; /* Valid, EA */
2891 ctrl = gsm_control_send(dlci->gsm, CMD_MSC, modembits, len + 1);
2892 if (ctrl == NULL)
2893 return -ENOMEM;
2894 return gsm_control_wait(dlci->gsm, ctrl);
2895}
2896
2897static int gsm_carrier_raised(struct tty_port *port)
2898{
2899 struct gsm_dlci *dlci = container_of(port, struct gsm_dlci, port);
b2d89ad9
TL
2900 struct gsm_mux *gsm = dlci->gsm;
2901
e1eaea46
AC
2902 /* Not yet open so no carrier info */
2903 if (dlci->state != DLCI_OPEN)
2904 return 0;
2905 if (debug & 2)
2906 return 1;
b2d89ad9
TL
2907
2908 /*
2909 * Basic mode with control channel in ADM mode may not respond
2910 * to CMD_MSC at all and modem_rx is empty.
2911 */
2912 if (gsm->encoding == 0 && gsm->dlci[0]->mode == DLCI_MODE_ADM &&
2913 !dlci->modem_rx)
2914 return 1;
2915
e1eaea46
AC
2916 return dlci->modem_rx & TIOCM_CD;
2917}
2918
2919static void gsm_dtr_rts(struct tty_port *port, int onoff)
2920{
2921 struct gsm_dlci *dlci = container_of(port, struct gsm_dlci, port);
2922 unsigned int modem_tx = dlci->modem_tx;
2923 if (onoff)
2924 modem_tx |= TIOCM_DTR | TIOCM_RTS;
2925 else
2926 modem_tx &= ~(TIOCM_DTR | TIOCM_RTS);
2927 if (modem_tx != dlci->modem_tx) {
2928 dlci->modem_tx = modem_tx;
2929 gsmtty_modem_update(dlci, 0);
2930 }
2931}
2932
2933static const struct tty_port_operations gsm_port_ops = {
2934 .carrier_raised = gsm_carrier_raised,
2935 .dtr_rts = gsm_dtr_rts,
9a8e62bc 2936 .destruct = gsm_dlci_free,
e1eaea46
AC
2937};
2938
86176ed9 2939static int gsmtty_install(struct tty_driver *driver, struct tty_struct *tty)
e1eaea46
AC
2940{
2941 struct gsm_mux *gsm;
2942 struct gsm_dlci *dlci;
e1eaea46 2943 unsigned int line = tty->index;
43a9e710 2944 unsigned int mux = mux_line_to_num(line);
86176ed9
JS
2945 bool alloc = false;
2946 int ret;
e1eaea46
AC
2947
2948 line = line & 0x3F;
2949
2950 if (mux >= MAX_MUX)
2951 return -ENXIO;
2952 /* FIXME: we need to lock gsm_mux for lifetimes of ttys eventually */
2953 if (gsm_mux[mux] == NULL)
2954 return -EUNATCH;
2955 if (line == 0 || line > 61) /* 62/63 reserved */
2956 return -ECHRNG;
2957 gsm = gsm_mux[mux];
2958 if (gsm->dead)
2959 return -EL2HLT;
f3c909b4
AI
2960 /* If DLCI 0 is not yet fully open return an error.
2961 This is ok from a locking
2962 perspective as we don't have to worry about this
2963 if DLCI0 is lost */
dfabf7ff
CB
2964 mutex_lock(&gsm->mutex);
2965 if (gsm->dlci[0] && gsm->dlci[0]->state != DLCI_OPEN) {
2966 mutex_unlock(&gsm->mutex);
7e8ac7b2 2967 return -EL2NSYNC;
dfabf7ff 2968 }
e1eaea46 2969 dlci = gsm->dlci[line];
86176ed9
JS
2970 if (dlci == NULL) {
2971 alloc = true;
e1eaea46 2972 dlci = gsm_dlci_alloc(gsm, line);
86176ed9 2973 }
dfabf7ff
CB
2974 if (dlci == NULL) {
2975 mutex_unlock(&gsm->mutex);
e1eaea46 2976 return -ENOMEM;
dfabf7ff 2977 }
86176ed9
JS
2978 ret = tty_port_install(&dlci->port, driver, tty);
2979 if (ret) {
2980 if (alloc)
2981 dlci_put(dlci);
dfabf7ff 2982 mutex_unlock(&gsm->mutex);
86176ed9
JS
2983 return ret;
2984 }
2985
dfabf7ff
CB
2986 dlci_get(dlci);
2987 dlci_get(gsm->dlci[0]);
2988 mux_get(gsm);
e1eaea46 2989 tty->driver_data = dlci;
dfabf7ff 2990 mutex_unlock(&gsm->mutex);
86176ed9
JS
2991
2992 return 0;
2993}
2994
2995static int gsmtty_open(struct tty_struct *tty, struct file *filp)
2996{
2997 struct gsm_dlci *dlci = tty->driver_data;
2998 struct tty_port *port = &dlci->port;
2999
3000 port->count++;
e1eaea46
AC
3001 tty_port_tty_set(port, tty);
3002
3003 dlci->modem_rx = 0;
3004 /* We could in theory open and close before we wait - eg if we get
3005 a DM straight back. This is ok as that will have caused a hangup */
d41861ca 3006 tty_port_set_initialized(port, 1);
e1eaea46
AC
3007 /* Start sending off SABM messages */
3008 gsm_dlci_begin_open(dlci);
3009 /* And wait for virtual carrier */
3010 return tty_port_block_til_ready(port, tty, filp);
3011}
3012
3013static void gsmtty_close(struct tty_struct *tty, struct file *filp)
3014{
3015 struct gsm_dlci *dlci = tty->driver_data;
6ab8fba7 3016
e1eaea46
AC
3017 if (dlci == NULL)
3018 return;
4d9b1090
DB
3019 if (dlci->state == DLCI_CLOSED)
3020 return;
bcd5abe2
RG
3021 mutex_lock(&dlci->mutex);
3022 gsm_destroy_network(dlci);
3023 mutex_unlock(&dlci->mutex);
e1eaea46 3024 if (tty_port_close_start(&dlci->port, tty, filp) == 0)
dfabf7ff 3025 return;
e1eaea46 3026 gsm_dlci_begin_close(dlci);
d41861ca
PH
3027 if (tty_port_initialized(&dlci->port) && C_HUPCL(tty))
3028 tty_port_lower_dtr_rts(&dlci->port);
e1eaea46
AC
3029 tty_port_close_end(&dlci->port, tty);
3030 tty_port_tty_set(&dlci->port, NULL);
dfabf7ff 3031 return;
e1eaea46
AC
3032}
3033
3034static void gsmtty_hangup(struct tty_struct *tty)
3035{
3036 struct gsm_dlci *dlci = tty->driver_data;
4d9b1090
DB
3037 if (dlci->state == DLCI_CLOSED)
3038 return;
e1eaea46
AC
3039 tty_port_hangup(&dlci->port);
3040 gsm_dlci_begin_close(dlci);
3041}
3042
3043static int gsmtty_write(struct tty_struct *tty, const unsigned char *buf,
3044 int len)
3045{
4d9b1090 3046 int sent;
e1eaea46 3047 struct gsm_dlci *dlci = tty->driver_data;
4d9b1090
DB
3048 if (dlci->state == DLCI_CLOSED)
3049 return -EINVAL;
e1eaea46 3050 /* Stuff the bytes into the fifo queue */
036bca1f 3051 sent = kfifo_in_locked(&dlci->fifo, buf, len, &dlci->lock);
e1eaea46
AC
3052 /* Need to kick the channel */
3053 gsm_dlci_data_kick(dlci);
3054 return sent;
3055}
3056
3057static int gsmtty_write_room(struct tty_struct *tty)
3058{
3059 struct gsm_dlci *dlci = tty->driver_data;
4d9b1090 3060 if (dlci->state == DLCI_CLOSED)
6bfbfcfc 3061 return 0;
036bca1f 3062 return TX_SIZE - kfifo_len(&dlci->fifo);
e1eaea46
AC
3063}
3064
3065static int gsmtty_chars_in_buffer(struct tty_struct *tty)
3066{
3067 struct gsm_dlci *dlci = tty->driver_data;
4d9b1090 3068 if (dlci->state == DLCI_CLOSED)
10eb63e5 3069 return 0;
036bca1f 3070 return kfifo_len(&dlci->fifo);
e1eaea46
AC
3071}
3072
3073static void gsmtty_flush_buffer(struct tty_struct *tty)
3074{
3075 struct gsm_dlci *dlci = tty->driver_data;
4d9b1090
DB
3076 if (dlci->state == DLCI_CLOSED)
3077 return;
e1eaea46
AC
3078 /* Caution needed: If we implement reliable transport classes
3079 then the data being transmitted can't simply be junked once
3080 it has first hit the stack. Until then we can just blow it
3081 away */
036bca1f 3082 kfifo_reset(&dlci->fifo);
e1eaea46
AC
3083 /* Need to unhook this DLCI from the transmit queue logic */
3084}
3085
3086static void gsmtty_wait_until_sent(struct tty_struct *tty, int timeout)
3087{
3088 /* The FIFO handles the queue so the kernel will do the right
3089 thing waiting on chars_in_buffer before calling us. No work
3090 to do here */
3091}
3092
60b33c13 3093static int gsmtty_tiocmget(struct tty_struct *tty)
e1eaea46
AC
3094{
3095 struct gsm_dlci *dlci = tty->driver_data;
4d9b1090
DB
3096 if (dlci->state == DLCI_CLOSED)
3097 return -EINVAL;
e1eaea46
AC
3098 return dlci->modem_rx;
3099}
3100
20b9d177 3101static int gsmtty_tiocmset(struct tty_struct *tty,
e1eaea46
AC
3102 unsigned int set, unsigned int clear)
3103{
3104 struct gsm_dlci *dlci = tty->driver_data;
3105 unsigned int modem_tx = dlci->modem_tx;
3106
4d9b1090
DB
3107 if (dlci->state == DLCI_CLOSED)
3108 return -EINVAL;
cf16807b 3109 modem_tx &= ~clear;
e1eaea46
AC
3110 modem_tx |= set;
3111
3112 if (modem_tx != dlci->modem_tx) {
3113 dlci->modem_tx = modem_tx;
3114 return gsmtty_modem_update(dlci, 0);
3115 }
3116 return 0;
3117}
3118
3119
6caa76b7 3120static int gsmtty_ioctl(struct tty_struct *tty,
e1eaea46
AC
3121 unsigned int cmd, unsigned long arg)
3122{
bcd5abe2
RG
3123 struct gsm_dlci *dlci = tty->driver_data;
3124 struct gsm_netconfig nc;
3125 int index;
3126
4d9b1090
DB
3127 if (dlci->state == DLCI_CLOSED)
3128 return -EINVAL;
bcd5abe2
RG
3129 switch (cmd) {
3130 case GSMIOC_ENABLE_NET:
3131 if (copy_from_user(&nc, (void __user *)arg, sizeof(nc)))
3132 return -EFAULT;
3133 nc.if_name[IFNAMSIZ-1] = '\0';
3134 /* return net interface index or error code */
3135 mutex_lock(&dlci->mutex);
3136 index = gsm_create_network(dlci, &nc);
3137 mutex_unlock(&dlci->mutex);
3138 if (copy_to_user((void __user *)arg, &nc, sizeof(nc)))
3139 return -EFAULT;
3140 return index;
3141 case GSMIOC_DISABLE_NET:
3142 if (!capable(CAP_NET_ADMIN))
3143 return -EPERM;
3144 mutex_lock(&dlci->mutex);
3145 gsm_destroy_network(dlci);
3146 mutex_unlock(&dlci->mutex);
3147 return 0;
3148 default:
3149 return -ENOIOCTLCMD;
3150 }
e1eaea46
AC
3151}
3152
3153static void gsmtty_set_termios(struct tty_struct *tty, struct ktermios *old)
3154{
4d9b1090
DB
3155 struct gsm_dlci *dlci = tty->driver_data;
3156 if (dlci->state == DLCI_CLOSED)
3157 return;
e1eaea46
AC
3158 /* For the moment its fixed. In actual fact the speed information
3159 for the virtual channel can be propogated in both directions by
3160 the RPN control message. This however rapidly gets nasty as we
3161 then have to remap modem signals each way according to whether
3162 our virtual cable is null modem etc .. */
adc8d746 3163 tty_termios_copy_hw(&tty->termios, old);
e1eaea46
AC
3164}
3165
3166static void gsmtty_throttle(struct tty_struct *tty)
3167{
3168 struct gsm_dlci *dlci = tty->driver_data;
4d9b1090
DB
3169 if (dlci->state == DLCI_CLOSED)
3170 return;
9db276f8 3171 if (C_CRTSCTS(tty))
e1eaea46 3172 dlci->modem_tx &= ~TIOCM_DTR;
e9360b9a 3173 dlci->throttled = true;
e1eaea46
AC
3174 /* Send an MSC with DTR cleared */
3175 gsmtty_modem_update(dlci, 0);
3176}
3177
3178static void gsmtty_unthrottle(struct tty_struct *tty)
3179{
3180 struct gsm_dlci *dlci = tty->driver_data;
4d9b1090
DB
3181 if (dlci->state == DLCI_CLOSED)
3182 return;
9db276f8 3183 if (C_CRTSCTS(tty))
e1eaea46 3184 dlci->modem_tx |= TIOCM_DTR;
e9360b9a 3185 dlci->throttled = false;
e1eaea46
AC
3186 /* Send an MSC with DTR set */
3187 gsmtty_modem_update(dlci, 0);
3188}
3189
3190static int gsmtty_break_ctl(struct tty_struct *tty, int state)
3191{
3192 struct gsm_dlci *dlci = tty->driver_data;
3193 int encode = 0; /* Off */
4d9b1090
DB
3194 if (dlci->state == DLCI_CLOSED)
3195 return -EINVAL;
e1eaea46
AC
3196
3197 if (state == -1) /* "On indefinitely" - we can't encode this
3198 properly */
3199 encode = 0x0F;
3200 else if (state > 0) {
3201 encode = state / 200; /* mS to encoding */
3202 if (encode > 0x0F)
3203 encode = 0x0F; /* Best effort */
3204 }
3205 return gsmtty_modem_update(dlci, encode);
3206}
3207
8f9cfeed 3208static void gsmtty_cleanup(struct tty_struct *tty)
dfabf7ff
CB
3209{
3210 struct gsm_dlci *dlci = tty->driver_data;
3211 struct gsm_mux *gsm = dlci->gsm;
3212
3213 dlci_put(dlci);
3214 dlci_put(gsm->dlci[0]);
3215 mux_put(gsm);
dfabf7ff 3216}
e1eaea46
AC
3217
3218/* Virtual ttys for the demux */
3219static const struct tty_operations gsmtty_ops = {
86176ed9 3220 .install = gsmtty_install,
e1eaea46
AC
3221 .open = gsmtty_open,
3222 .close = gsmtty_close,
3223 .write = gsmtty_write,
3224 .write_room = gsmtty_write_room,
3225 .chars_in_buffer = gsmtty_chars_in_buffer,
3226 .flush_buffer = gsmtty_flush_buffer,
3227 .ioctl = gsmtty_ioctl,
3228 .throttle = gsmtty_throttle,
3229 .unthrottle = gsmtty_unthrottle,
3230 .set_termios = gsmtty_set_termios,
3231 .hangup = gsmtty_hangup,
3232 .wait_until_sent = gsmtty_wait_until_sent,
3233 .tiocmget = gsmtty_tiocmget,
3234 .tiocmset = gsmtty_tiocmset,
3235 .break_ctl = gsmtty_break_ctl,
8f9cfeed 3236 .cleanup = gsmtty_cleanup,
e1eaea46
AC
3237};
3238
3239
3240
3241static int __init gsm_init(void)
3242{
3243 /* Fill in our line protocol discipline, and register it */
3244 int status = tty_register_ldisc(N_GSM0710, &tty_ldisc_packet);
3245 if (status != 0) {
5f9a31d6
AC
3246 pr_err("n_gsm: can't register line discipline (err = %d)\n",
3247 status);
e1eaea46
AC
3248 return status;
3249 }
3250
3251 gsm_tty_driver = alloc_tty_driver(256);
3252 if (!gsm_tty_driver) {
3253 tty_unregister_ldisc(N_GSM0710);
5f9a31d6 3254 pr_err("gsm_init: tty allocation failed.\n");
e1eaea46
AC
3255 return -EINVAL;
3256 }
e1eaea46
AC
3257 gsm_tty_driver->driver_name = "gsmtty";
3258 gsm_tty_driver->name = "gsmtty";
3259 gsm_tty_driver->major = 0; /* Dynamic */
3260 gsm_tty_driver->minor_start = 0;
3261 gsm_tty_driver->type = TTY_DRIVER_TYPE_SERIAL;
3262 gsm_tty_driver->subtype = SERIAL_TYPE_NORMAL;
3263 gsm_tty_driver->flags = TTY_DRIVER_REAL_RAW | TTY_DRIVER_DYNAMIC_DEV
5f9a31d6 3264 | TTY_DRIVER_HARDWARE_BREAK;
e1eaea46
AC
3265 gsm_tty_driver->init_termios = tty_std_termios;
3266 /* Fixme */
3267 gsm_tty_driver->init_termios.c_lflag &= ~ECHO;
3268 tty_set_operations(gsm_tty_driver, &gsmtty_ops);
3269
e1eaea46
AC
3270 if (tty_register_driver(gsm_tty_driver)) {
3271 put_tty_driver(gsm_tty_driver);
3272 tty_unregister_ldisc(N_GSM0710);
5f9a31d6 3273 pr_err("gsm_init: tty registration failed.\n");
e1eaea46
AC
3274 return -EBUSY;
3275 }
5f9a31d6
AC
3276 pr_debug("gsm_init: loaded as %d,%d.\n",
3277 gsm_tty_driver->major, gsm_tty_driver->minor_start);
e1eaea46
AC
3278 return 0;
3279}
3280
3281static void __exit gsm_exit(void)
3282{
3283 int status = tty_unregister_ldisc(N_GSM0710);
3284 if (status != 0)
5f9a31d6
AC
3285 pr_err("n_gsm: can't unregister line discipline (err = %d)\n",
3286 status);
e1eaea46
AC
3287 tty_unregister_driver(gsm_tty_driver);
3288 put_tty_driver(gsm_tty_driver);
e1eaea46
AC
3289}
3290
3291module_init(gsm_init);
3292module_exit(gsm_exit);
3293
3294
3295MODULE_LICENSE("GPL");
3296MODULE_ALIAS_LDISC(N_GSM0710);