1d27a76faSLarry Finger // SPDX-License-Identifier: GPL-2.0
2d27a76faSLarry Finger /* Copyright(c) 2009-2012 Realtek Corporation.*/
3d27a76faSLarry Finger
4f1d2b4d3SLarry Finger #include "wifi.h"
5f1d2b4d3SLarry Finger #include "efuse.h"
6edb45b67SLarry Finger #include "pci.h"
7f1d2b4d3SLarry Finger #include <linux/export.h>
8f1d2b4d3SLarry Finger
9f1d2b4d3SLarry Finger static const u8 PGPKT_DATA_SIZE = 8;
10f1d2b4d3SLarry Finger static const int EFUSE_MAX_SIZE = 512;
11f1d2b4d3SLarry Finger
1289d32c90SLarry Finger #define START_ADDRESS 0x1000
1389d32c90SLarry Finger #define REG_MCUFWDL 0x0080
1489d32c90SLarry Finger
152cdd634eSPing-Ke Shih static const struct rtl_efuse_ops efuse_ops = {
162cdd634eSPing-Ke Shih .efuse_onebyte_read = efuse_one_byte_read,
172cdd634eSPing-Ke Shih .efuse_logical_map_read = efuse_shadow_read,
182cdd634eSPing-Ke Shih };
192cdd634eSPing-Ke Shih
20f1d2b4d3SLarry Finger static void efuse_shadow_read_1byte(struct ieee80211_hw *hw, u16 offset,
21f1d2b4d3SLarry Finger u8 *value);
22f1d2b4d3SLarry Finger static void efuse_shadow_read_2byte(struct ieee80211_hw *hw, u16 offset,
23f1d2b4d3SLarry Finger u16 *value);
24f1d2b4d3SLarry Finger static void efuse_shadow_read_4byte(struct ieee80211_hw *hw, u16 offset,
25f1d2b4d3SLarry Finger u32 *value);
26f1d2b4d3SLarry Finger static void efuse_shadow_write_1byte(struct ieee80211_hw *hw, u16 offset,
27f1d2b4d3SLarry Finger u8 value);
28f1d2b4d3SLarry Finger static void efuse_shadow_write_2byte(struct ieee80211_hw *hw, u16 offset,
29f1d2b4d3SLarry Finger u16 value);
30f1d2b4d3SLarry Finger static void efuse_shadow_write_4byte(struct ieee80211_hw *hw, u16 offset,
31f1d2b4d3SLarry Finger u32 value);
32f1d2b4d3SLarry Finger static int efuse_one_byte_write(struct ieee80211_hw *hw, u16 addr,
33f1d2b4d3SLarry Finger u8 data);
34f1d2b4d3SLarry Finger static void efuse_read_all_map(struct ieee80211_hw *hw, u8 *efuse);
35f1d2b4d3SLarry Finger static int efuse_pg_packet_read(struct ieee80211_hw *hw, u8 offset,
36f1d2b4d3SLarry Finger u8 *data);
37f1d2b4d3SLarry Finger static int efuse_pg_packet_write(struct ieee80211_hw *hw, u8 offset,
38f1d2b4d3SLarry Finger u8 word_en, u8 *data);
39f1d2b4d3SLarry Finger static void efuse_word_enable_data_read(u8 word_en, u8 *sourdata,
40f1d2b4d3SLarry Finger u8 *targetdata);
41f1d2b4d3SLarry Finger static u8 enable_efuse_data_write(struct ieee80211_hw *hw,
42f1d2b4d3SLarry Finger u16 efuse_addr, u8 word_en, u8 *data);
43f1d2b4d3SLarry Finger static u16 efuse_get_current_size(struct ieee80211_hw *hw);
44f1d2b4d3SLarry Finger static u8 efuse_calculate_word_cnts(u8 word_en);
45f1d2b4d3SLarry Finger
efuse_initialize(struct ieee80211_hw * hw)46f1d2b4d3SLarry Finger void efuse_initialize(struct ieee80211_hw *hw)
47f1d2b4d3SLarry Finger {
48f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
49f1d2b4d3SLarry Finger u8 bytetemp;
50f1d2b4d3SLarry Finger u8 temp;
51f1d2b4d3SLarry Finger
52f1d2b4d3SLarry Finger bytetemp = rtl_read_byte(rtlpriv, rtlpriv->cfg->maps[SYS_FUNC_EN] + 1);
53f1d2b4d3SLarry Finger temp = bytetemp | 0x20;
54f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[SYS_FUNC_EN] + 1, temp);
55f1d2b4d3SLarry Finger
56f1d2b4d3SLarry Finger bytetemp = rtl_read_byte(rtlpriv, rtlpriv->cfg->maps[SYS_ISO_CTRL] + 1);
57f1d2b4d3SLarry Finger temp = bytetemp & 0xFE;
58f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[SYS_ISO_CTRL] + 1, temp);
59f1d2b4d3SLarry Finger
60f1d2b4d3SLarry Finger bytetemp = rtl_read_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_TEST] + 3);
61f1d2b4d3SLarry Finger temp = bytetemp | 0x80;
62f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_TEST] + 3, temp);
63f1d2b4d3SLarry Finger
64f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, 0x2F8, 0x3);
65f1d2b4d3SLarry Finger
66f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 3, 0x72);
67f1d2b4d3SLarry Finger
68f1d2b4d3SLarry Finger }
69f1d2b4d3SLarry Finger
efuse_read_1byte(struct ieee80211_hw * hw,u16 address)70f1d2b4d3SLarry Finger u8 efuse_read_1byte(struct ieee80211_hw *hw, u16 address)
71f1d2b4d3SLarry Finger {
72f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
73f1d2b4d3SLarry Finger u8 data;
74f1d2b4d3SLarry Finger u8 bytetemp;
75f1d2b4d3SLarry Finger u8 temp;
76f1d2b4d3SLarry Finger u32 k = 0;
77f1d2b4d3SLarry Finger const u32 efuse_len =
78f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_REAL_CONTENT_SIZE];
79f1d2b4d3SLarry Finger
80f1d2b4d3SLarry Finger if (address < efuse_len) {
81f1d2b4d3SLarry Finger temp = address & 0xFF;
82f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 1,
83f1d2b4d3SLarry Finger temp);
84f1d2b4d3SLarry Finger bytetemp = rtl_read_byte(rtlpriv,
85f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL] + 2);
86f1d2b4d3SLarry Finger temp = ((address >> 8) & 0x03) | (bytetemp & 0xFC);
87f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 2,
88f1d2b4d3SLarry Finger temp);
89f1d2b4d3SLarry Finger
90f1d2b4d3SLarry Finger bytetemp = rtl_read_byte(rtlpriv,
91f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL] + 3);
92f1d2b4d3SLarry Finger temp = bytetemp & 0x7F;
93f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 3,
94f1d2b4d3SLarry Finger temp);
95f1d2b4d3SLarry Finger
96f1d2b4d3SLarry Finger bytetemp = rtl_read_byte(rtlpriv,
97f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL] + 3);
98f1d2b4d3SLarry Finger while (!(bytetemp & 0x80)) {
99f1d2b4d3SLarry Finger bytetemp = rtl_read_byte(rtlpriv,
100f1d2b4d3SLarry Finger rtlpriv->cfg->
101f1d2b4d3SLarry Finger maps[EFUSE_CTRL] + 3);
102f1d2b4d3SLarry Finger k++;
103f0822dfcSColin Ian King if (k == 1000)
104f1d2b4d3SLarry Finger break;
105f1d2b4d3SLarry Finger }
106f1d2b4d3SLarry Finger data = rtl_read_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL]);
107f1d2b4d3SLarry Finger return data;
108f1d2b4d3SLarry Finger } else
109f1d2b4d3SLarry Finger return 0xFF;
110f1d2b4d3SLarry Finger
111f1d2b4d3SLarry Finger }
112f1d2b4d3SLarry Finger EXPORT_SYMBOL(efuse_read_1byte);
113f1d2b4d3SLarry Finger
efuse_write_1byte(struct ieee80211_hw * hw,u16 address,u8 value)114f1d2b4d3SLarry Finger void efuse_write_1byte(struct ieee80211_hw *hw, u16 address, u8 value)
115f1d2b4d3SLarry Finger {
116f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
117f1d2b4d3SLarry Finger u8 bytetemp;
118f1d2b4d3SLarry Finger u8 temp;
119f1d2b4d3SLarry Finger u32 k = 0;
120f1d2b4d3SLarry Finger const u32 efuse_len =
121f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_REAL_CONTENT_SIZE];
122f1d2b4d3SLarry Finger
123f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_EFUSE, DBG_LOUD, "Addr=%x Data =%x\n",
124f1d2b4d3SLarry Finger address, value);
125f1d2b4d3SLarry Finger
126f1d2b4d3SLarry Finger if (address < efuse_len) {
127f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL], value);
128f1d2b4d3SLarry Finger
129f1d2b4d3SLarry Finger temp = address & 0xFF;
130f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 1,
131f1d2b4d3SLarry Finger temp);
132f1d2b4d3SLarry Finger bytetemp = rtl_read_byte(rtlpriv,
133f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL] + 2);
134f1d2b4d3SLarry Finger
135f1d2b4d3SLarry Finger temp = ((address >> 8) & 0x03) | (bytetemp & 0xFC);
136f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv,
137f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL] + 2, temp);
138f1d2b4d3SLarry Finger
139f1d2b4d3SLarry Finger bytetemp = rtl_read_byte(rtlpriv,
140f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL] + 3);
141f1d2b4d3SLarry Finger temp = bytetemp | 0x80;
142f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv,
143f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL] + 3, temp);
144f1d2b4d3SLarry Finger
145f1d2b4d3SLarry Finger bytetemp = rtl_read_byte(rtlpriv,
146f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL] + 3);
147f1d2b4d3SLarry Finger
148f1d2b4d3SLarry Finger while (bytetemp & 0x80) {
149f1d2b4d3SLarry Finger bytetemp = rtl_read_byte(rtlpriv,
150f1d2b4d3SLarry Finger rtlpriv->cfg->
151f1d2b4d3SLarry Finger maps[EFUSE_CTRL] + 3);
152f1d2b4d3SLarry Finger k++;
153f1d2b4d3SLarry Finger if (k == 100) {
154f1d2b4d3SLarry Finger k = 0;
155f1d2b4d3SLarry Finger break;
156f1d2b4d3SLarry Finger }
157f1d2b4d3SLarry Finger }
158f1d2b4d3SLarry Finger }
159f1d2b4d3SLarry Finger
160f1d2b4d3SLarry Finger }
161f1d2b4d3SLarry Finger
read_efuse_byte(struct ieee80211_hw * hw,u16 _offset,u8 * pbuf)162f1d2b4d3SLarry Finger void read_efuse_byte(struct ieee80211_hw *hw, u16 _offset, u8 *pbuf)
163f1d2b4d3SLarry Finger {
164f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
165*8f3551f6SGuilherme G. Piccoli u16 max_attempts = 10000;
166f1d2b4d3SLarry Finger u32 value32;
167f1d2b4d3SLarry Finger u8 readbyte;
168f1d2b4d3SLarry Finger u16 retry;
169f1d2b4d3SLarry Finger
170*8f3551f6SGuilherme G. Piccoli /*
171*8f3551f6SGuilherme G. Piccoli * In case of USB devices, transfer speeds are limited, hence
172*8f3551f6SGuilherme G. Piccoli * efuse I/O reads could be (way) slower. So, decrease (a lot)
173*8f3551f6SGuilherme G. Piccoli * the read attempts in case of failures.
174*8f3551f6SGuilherme G. Piccoli */
175*8f3551f6SGuilherme G. Piccoli if (rtlpriv->rtlhal.interface == INTF_USB)
176*8f3551f6SGuilherme G. Piccoli max_attempts = 10;
177*8f3551f6SGuilherme G. Piccoli
178f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 1,
179f1d2b4d3SLarry Finger (_offset & 0xff));
180f1d2b4d3SLarry Finger readbyte = rtl_read_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 2);
181f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 2,
182f1d2b4d3SLarry Finger ((_offset >> 8) & 0x03) | (readbyte & 0xfc));
183f1d2b4d3SLarry Finger
184f1d2b4d3SLarry Finger readbyte = rtl_read_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 3);
185f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 3,
186f1d2b4d3SLarry Finger (readbyte & 0x7f));
187f1d2b4d3SLarry Finger
188f1d2b4d3SLarry Finger retry = 0;
189f1d2b4d3SLarry Finger value32 = rtl_read_dword(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL]);
190*8f3551f6SGuilherme G. Piccoli while (!(((value32 >> 24) & 0xff) & 0x80) && (retry < max_attempts)) {
191f1d2b4d3SLarry Finger value32 = rtl_read_dword(rtlpriv,
192f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL]);
193f1d2b4d3SLarry Finger retry++;
194f1d2b4d3SLarry Finger }
195f1d2b4d3SLarry Finger
196f1d2b4d3SLarry Finger udelay(50);
197f1d2b4d3SLarry Finger value32 = rtl_read_dword(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL]);
198f1d2b4d3SLarry Finger
199f1d2b4d3SLarry Finger *pbuf = (u8) (value32 & 0xff);
200f1d2b4d3SLarry Finger }
201f1d2b4d3SLarry Finger EXPORT_SYMBOL_GPL(read_efuse_byte);
202f1d2b4d3SLarry Finger
read_efuse(struct ieee80211_hw * hw,u16 _offset,u16 _size_byte,u8 * pbuf)203f1d2b4d3SLarry Finger void read_efuse(struct ieee80211_hw *hw, u16 _offset, u16 _size_byte, u8 *pbuf)
204f1d2b4d3SLarry Finger {
205f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
206f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
207f1d2b4d3SLarry Finger u8 *efuse_tbl;
208f1d2b4d3SLarry Finger u8 rtemp8[1];
209f1d2b4d3SLarry Finger u16 efuse_addr = 0;
210f1d2b4d3SLarry Finger u8 offset, wren;
211f1d2b4d3SLarry Finger u8 u1temp = 0;
212f1d2b4d3SLarry Finger u16 i;
213f1d2b4d3SLarry Finger u16 j;
214f1d2b4d3SLarry Finger const u16 efuse_max_section =
215f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_MAX_SECTION_MAP];
216f1d2b4d3SLarry Finger const u32 efuse_len =
217f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_REAL_CONTENT_SIZE];
218f1d2b4d3SLarry Finger u16 **efuse_word;
219f1d2b4d3SLarry Finger u16 efuse_utilized = 0;
220f1d2b4d3SLarry Finger u8 efuse_usage;
221f1d2b4d3SLarry Finger
222f1d2b4d3SLarry Finger if ((_offset + _size_byte) > rtlpriv->cfg->maps[EFUSE_HWSET_MAX_SIZE]) {
223f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_EFUSE, DBG_LOUD,
224f108a420SLarry Finger "%s: Invalid offset(%#x) with read bytes(%#x)!!\n",
225f108a420SLarry Finger __func__, _offset, _size_byte);
226f1d2b4d3SLarry Finger return;
227f1d2b4d3SLarry Finger }
228f1d2b4d3SLarry Finger
229f1d2b4d3SLarry Finger /* allocate memory for efuse_tbl and efuse_word */
2306396bb22SKees Cook efuse_tbl = kzalloc(rtlpriv->cfg->maps[EFUSE_HWSET_MAX_SIZE],
2316396bb22SKees Cook GFP_ATOMIC);
232f1d2b4d3SLarry Finger if (!efuse_tbl)
233f1d2b4d3SLarry Finger return;
2346c726f36STobin C. Harding efuse_word = kcalloc(EFUSE_MAX_WORD_UNIT, sizeof(u16 *), GFP_ATOMIC);
235f1d2b4d3SLarry Finger if (!efuse_word)
236f1d2b4d3SLarry Finger goto out;
237f1d2b4d3SLarry Finger for (i = 0; i < EFUSE_MAX_WORD_UNIT; i++) {
2386c726f36STobin C. Harding efuse_word[i] = kcalloc(efuse_max_section, sizeof(u16),
239f1d2b4d3SLarry Finger GFP_ATOMIC);
240f1d2b4d3SLarry Finger if (!efuse_word[i])
241f1d2b4d3SLarry Finger goto done;
242f1d2b4d3SLarry Finger }
243f1d2b4d3SLarry Finger
244f1d2b4d3SLarry Finger for (i = 0; i < efuse_max_section; i++)
245f1d2b4d3SLarry Finger for (j = 0; j < EFUSE_MAX_WORD_UNIT; j++)
246f1d2b4d3SLarry Finger efuse_word[j][i] = 0xFFFF;
247f1d2b4d3SLarry Finger
248f1d2b4d3SLarry Finger read_efuse_byte(hw, efuse_addr, rtemp8);
249f1d2b4d3SLarry Finger if (*rtemp8 != 0xFF) {
250f1d2b4d3SLarry Finger efuse_utilized++;
251f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FEEPROM, EFUSE_READ_ALL,
252f1d2b4d3SLarry Finger "Addr=%d\n", efuse_addr);
253f1d2b4d3SLarry Finger efuse_addr++;
254f1d2b4d3SLarry Finger }
255f1d2b4d3SLarry Finger
256f1d2b4d3SLarry Finger while ((*rtemp8 != 0xFF) && (efuse_addr < efuse_len)) {
257f1d2b4d3SLarry Finger /* Check PG header for section num. */
258f1d2b4d3SLarry Finger if ((*rtemp8 & 0x1F) == 0x0F) {/* extended header */
259f1d2b4d3SLarry Finger u1temp = ((*rtemp8 & 0xE0) >> 5);
260f1d2b4d3SLarry Finger read_efuse_byte(hw, efuse_addr, rtemp8);
261f1d2b4d3SLarry Finger
262f1d2b4d3SLarry Finger if ((*rtemp8 & 0x0F) == 0x0F) {
263f1d2b4d3SLarry Finger efuse_addr++;
264f1d2b4d3SLarry Finger read_efuse_byte(hw, efuse_addr, rtemp8);
265f1d2b4d3SLarry Finger
266f1d2b4d3SLarry Finger if (*rtemp8 != 0xFF &&
267f1d2b4d3SLarry Finger (efuse_addr < efuse_len)) {
268f1d2b4d3SLarry Finger efuse_addr++;
269f1d2b4d3SLarry Finger }
270f1d2b4d3SLarry Finger continue;
271f1d2b4d3SLarry Finger } else {
272f1d2b4d3SLarry Finger offset = ((*rtemp8 & 0xF0) >> 1) | u1temp;
273f1d2b4d3SLarry Finger wren = (*rtemp8 & 0x0F);
274f1d2b4d3SLarry Finger efuse_addr++;
275f1d2b4d3SLarry Finger }
276f1d2b4d3SLarry Finger } else {
277f1d2b4d3SLarry Finger offset = ((*rtemp8 >> 4) & 0x0f);
278f1d2b4d3SLarry Finger wren = (*rtemp8 & 0x0f);
279f1d2b4d3SLarry Finger }
280f1d2b4d3SLarry Finger
281f1d2b4d3SLarry Finger if (offset < efuse_max_section) {
282f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FEEPROM, EFUSE_READ_ALL,
283f1d2b4d3SLarry Finger "offset-%d Worden=%x\n", offset, wren);
284f1d2b4d3SLarry Finger
285f1d2b4d3SLarry Finger for (i = 0; i < EFUSE_MAX_WORD_UNIT; i++) {
286f1d2b4d3SLarry Finger if (!(wren & 0x01)) {
287f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FEEPROM,
288f1d2b4d3SLarry Finger EFUSE_READ_ALL,
289f1d2b4d3SLarry Finger "Addr=%d\n", efuse_addr);
290f1d2b4d3SLarry Finger
291f1d2b4d3SLarry Finger read_efuse_byte(hw, efuse_addr, rtemp8);
292f1d2b4d3SLarry Finger efuse_addr++;
293f1d2b4d3SLarry Finger efuse_utilized++;
294f1d2b4d3SLarry Finger efuse_word[i][offset] =
295f1d2b4d3SLarry Finger (*rtemp8 & 0xff);
296f1d2b4d3SLarry Finger
297f1d2b4d3SLarry Finger if (efuse_addr >= efuse_len)
298f1d2b4d3SLarry Finger break;
299f1d2b4d3SLarry Finger
300f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FEEPROM,
301f1d2b4d3SLarry Finger EFUSE_READ_ALL,
302f1d2b4d3SLarry Finger "Addr=%d\n", efuse_addr);
303f1d2b4d3SLarry Finger
304f1d2b4d3SLarry Finger read_efuse_byte(hw, efuse_addr, rtemp8);
305f1d2b4d3SLarry Finger efuse_addr++;
306f1d2b4d3SLarry Finger efuse_utilized++;
307f1d2b4d3SLarry Finger efuse_word[i][offset] |=
308f1d2b4d3SLarry Finger (((u16)*rtemp8 << 8) & 0xff00);
309f1d2b4d3SLarry Finger
310f1d2b4d3SLarry Finger if (efuse_addr >= efuse_len)
311f1d2b4d3SLarry Finger break;
312f1d2b4d3SLarry Finger }
313f1d2b4d3SLarry Finger
314f1d2b4d3SLarry Finger wren >>= 1;
315f1d2b4d3SLarry Finger }
316f1d2b4d3SLarry Finger }
317f1d2b4d3SLarry Finger
318f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FEEPROM, EFUSE_READ_ALL,
319f1d2b4d3SLarry Finger "Addr=%d\n", efuse_addr);
320f1d2b4d3SLarry Finger read_efuse_byte(hw, efuse_addr, rtemp8);
321f1d2b4d3SLarry Finger if (*rtemp8 != 0xFF && (efuse_addr < efuse_len)) {
322f1d2b4d3SLarry Finger efuse_utilized++;
323f1d2b4d3SLarry Finger efuse_addr++;
324f1d2b4d3SLarry Finger }
325f1d2b4d3SLarry Finger }
326f1d2b4d3SLarry Finger
327f1d2b4d3SLarry Finger for (i = 0; i < efuse_max_section; i++) {
328f1d2b4d3SLarry Finger for (j = 0; j < EFUSE_MAX_WORD_UNIT; j++) {
329f1d2b4d3SLarry Finger efuse_tbl[(i * 8) + (j * 2)] =
330f1d2b4d3SLarry Finger (efuse_word[j][i] & 0xff);
331f1d2b4d3SLarry Finger efuse_tbl[(i * 8) + ((j * 2) + 1)] =
332f1d2b4d3SLarry Finger ((efuse_word[j][i] >> 8) & 0xff);
333f1d2b4d3SLarry Finger }
334f1d2b4d3SLarry Finger }
335f1d2b4d3SLarry Finger
336f1d2b4d3SLarry Finger for (i = 0; i < _size_byte; i++)
337f1d2b4d3SLarry Finger pbuf[i] = efuse_tbl[_offset + i];
338f1d2b4d3SLarry Finger
339f1d2b4d3SLarry Finger rtlefuse->efuse_usedbytes = efuse_utilized;
340f1d2b4d3SLarry Finger efuse_usage = (u8) ((efuse_utilized * 100) / efuse_len);
341f1d2b4d3SLarry Finger rtlefuse->efuse_usedpercentage = efuse_usage;
342f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_EFUSE_BYTES,
343f1d2b4d3SLarry Finger (u8 *)&efuse_utilized);
344f1d2b4d3SLarry Finger rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_EFUSE_USAGE,
345f1d2b4d3SLarry Finger &efuse_usage);
346f1d2b4d3SLarry Finger done:
347f1d2b4d3SLarry Finger for (i = 0; i < EFUSE_MAX_WORD_UNIT; i++)
348f1d2b4d3SLarry Finger kfree(efuse_word[i]);
349f1d2b4d3SLarry Finger kfree(efuse_word);
350f1d2b4d3SLarry Finger out:
351f1d2b4d3SLarry Finger kfree(efuse_tbl);
352f1d2b4d3SLarry Finger }
353f1d2b4d3SLarry Finger
efuse_shadow_update_chk(struct ieee80211_hw * hw)354f1d2b4d3SLarry Finger bool efuse_shadow_update_chk(struct ieee80211_hw *hw)
355f1d2b4d3SLarry Finger {
356f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
357f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
358e703c5ddSLarry Finger u8 section_idx, i, base;
359f1d2b4d3SLarry Finger u16 words_need = 0, hdr_num = 0, totalbytes, efuse_used;
360f1d2b4d3SLarry Finger bool wordchanged, result = true;
361f1d2b4d3SLarry Finger
362f1d2b4d3SLarry Finger for (section_idx = 0; section_idx < 16; section_idx++) {
363e703c5ddSLarry Finger base = section_idx * 8;
364f1d2b4d3SLarry Finger wordchanged = false;
365f1d2b4d3SLarry Finger
366f1d2b4d3SLarry Finger for (i = 0; i < 8; i = i + 2) {
367e703c5ddSLarry Finger if (rtlefuse->efuse_map[EFUSE_INIT_MAP][base + i] !=
368e703c5ddSLarry Finger rtlefuse->efuse_map[EFUSE_MODIFY_MAP][base + i] ||
369e703c5ddSLarry Finger rtlefuse->efuse_map[EFUSE_INIT_MAP][base + i + 1] !=
370e703c5ddSLarry Finger rtlefuse->efuse_map[EFUSE_MODIFY_MAP][base + i +
371e703c5ddSLarry Finger 1]) {
372f1d2b4d3SLarry Finger words_need++;
373f1d2b4d3SLarry Finger wordchanged = true;
374f1d2b4d3SLarry Finger }
375f1d2b4d3SLarry Finger }
376f1d2b4d3SLarry Finger
377f1d2b4d3SLarry Finger if (wordchanged)
378f1d2b4d3SLarry Finger hdr_num++;
379f1d2b4d3SLarry Finger }
380f1d2b4d3SLarry Finger
381f1d2b4d3SLarry Finger totalbytes = hdr_num + words_need * 2;
382f1d2b4d3SLarry Finger efuse_used = rtlefuse->efuse_usedbytes;
383f1d2b4d3SLarry Finger
384f1d2b4d3SLarry Finger if ((totalbytes + efuse_used) >=
385f1d2b4d3SLarry Finger (EFUSE_MAX_SIZE - rtlpriv->cfg->maps[EFUSE_OOB_PROTECT_BYTES_LEN]))
386f1d2b4d3SLarry Finger result = false;
387f1d2b4d3SLarry Finger
388f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_EFUSE, DBG_LOUD,
389f108a420SLarry Finger "%s: totalbytes(%#x), hdr_num(%#x), words_need(%#x), efuse_used(%d)\n",
390f108a420SLarry Finger __func__, totalbytes, hdr_num, words_need, efuse_used);
391f1d2b4d3SLarry Finger
392f1d2b4d3SLarry Finger return result;
393f1d2b4d3SLarry Finger }
394f1d2b4d3SLarry Finger
efuse_shadow_read(struct ieee80211_hw * hw,u8 type,u16 offset,u32 * value)395f1d2b4d3SLarry Finger void efuse_shadow_read(struct ieee80211_hw *hw, u8 type,
396f1d2b4d3SLarry Finger u16 offset, u32 *value)
397f1d2b4d3SLarry Finger {
398f1d2b4d3SLarry Finger if (type == 1)
399f1d2b4d3SLarry Finger efuse_shadow_read_1byte(hw, offset, (u8 *)value);
400f1d2b4d3SLarry Finger else if (type == 2)
401f1d2b4d3SLarry Finger efuse_shadow_read_2byte(hw, offset, (u16 *)value);
402f1d2b4d3SLarry Finger else if (type == 4)
403f1d2b4d3SLarry Finger efuse_shadow_read_4byte(hw, offset, value);
404f1d2b4d3SLarry Finger
405f1d2b4d3SLarry Finger }
406f1d2b4d3SLarry Finger EXPORT_SYMBOL(efuse_shadow_read);
407f1d2b4d3SLarry Finger
efuse_shadow_write(struct ieee80211_hw * hw,u8 type,u16 offset,u32 value)408f1d2b4d3SLarry Finger void efuse_shadow_write(struct ieee80211_hw *hw, u8 type, u16 offset,
409f1d2b4d3SLarry Finger u32 value)
410f1d2b4d3SLarry Finger {
411f1d2b4d3SLarry Finger if (type == 1)
412f1d2b4d3SLarry Finger efuse_shadow_write_1byte(hw, offset, (u8) value);
413f1d2b4d3SLarry Finger else if (type == 2)
414f1d2b4d3SLarry Finger efuse_shadow_write_2byte(hw, offset, (u16) value);
415f1d2b4d3SLarry Finger else if (type == 4)
416f1d2b4d3SLarry Finger efuse_shadow_write_4byte(hw, offset, value);
417f1d2b4d3SLarry Finger
418f1d2b4d3SLarry Finger }
419f1d2b4d3SLarry Finger
efuse_shadow_update(struct ieee80211_hw * hw)420f1d2b4d3SLarry Finger bool efuse_shadow_update(struct ieee80211_hw *hw)
421f1d2b4d3SLarry Finger {
422f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
423f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
424f1d2b4d3SLarry Finger u16 i, offset, base;
425f1d2b4d3SLarry Finger u8 word_en = 0x0F;
426f1d2b4d3SLarry Finger u8 first_pg = false;
427f1d2b4d3SLarry Finger
428f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_EFUSE, DBG_LOUD, "\n");
429f1d2b4d3SLarry Finger
430f1d2b4d3SLarry Finger if (!efuse_shadow_update_chk(hw)) {
431f1d2b4d3SLarry Finger efuse_read_all_map(hw, &rtlefuse->efuse_map[EFUSE_INIT_MAP][0]);
432f1d2b4d3SLarry Finger memcpy(&rtlefuse->efuse_map[EFUSE_MODIFY_MAP][0],
433f1d2b4d3SLarry Finger &rtlefuse->efuse_map[EFUSE_INIT_MAP][0],
434f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_HWSET_MAX_SIZE]);
435f1d2b4d3SLarry Finger
436f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_EFUSE, DBG_LOUD,
437f1d2b4d3SLarry Finger "efuse out of capacity!!\n");
438f1d2b4d3SLarry Finger return false;
439f1d2b4d3SLarry Finger }
440f1d2b4d3SLarry Finger efuse_power_switch(hw, true, true);
441f1d2b4d3SLarry Finger
442f1d2b4d3SLarry Finger for (offset = 0; offset < 16; offset++) {
443f1d2b4d3SLarry Finger
444f1d2b4d3SLarry Finger word_en = 0x0F;
445f1d2b4d3SLarry Finger base = offset * 8;
446f1d2b4d3SLarry Finger
447f1d2b4d3SLarry Finger for (i = 0; i < 8; i++) {
448f1d2b4d3SLarry Finger if (first_pg) {
449f1d2b4d3SLarry Finger word_en &= ~(BIT(i / 2));
450f1d2b4d3SLarry Finger
451f1d2b4d3SLarry Finger rtlefuse->efuse_map[EFUSE_INIT_MAP][base + i] =
452f1d2b4d3SLarry Finger rtlefuse->efuse_map[EFUSE_MODIFY_MAP][base + i];
453f1d2b4d3SLarry Finger } else {
454f1d2b4d3SLarry Finger
455f1d2b4d3SLarry Finger if (rtlefuse->efuse_map[EFUSE_INIT_MAP][base + i] !=
456f1d2b4d3SLarry Finger rtlefuse->efuse_map[EFUSE_MODIFY_MAP][base + i]) {
457f1d2b4d3SLarry Finger word_en &= ~(BIT(i / 2));
458f1d2b4d3SLarry Finger
459f1d2b4d3SLarry Finger rtlefuse->efuse_map[EFUSE_INIT_MAP][base + i] =
460f1d2b4d3SLarry Finger rtlefuse->efuse_map[EFUSE_MODIFY_MAP][base + i];
461f1d2b4d3SLarry Finger }
462f1d2b4d3SLarry Finger }
463f1d2b4d3SLarry Finger }
464f1d2b4d3SLarry Finger
465f1d2b4d3SLarry Finger if (word_en != 0x0F) {
466f1d2b4d3SLarry Finger u8 tmpdata[8];
467b16abaafSLarry Finger
468f1d2b4d3SLarry Finger memcpy(tmpdata,
469f1d2b4d3SLarry Finger &rtlefuse->efuse_map[EFUSE_MODIFY_MAP][base],
470f1d2b4d3SLarry Finger 8);
471f1d2b4d3SLarry Finger RT_PRINT_DATA(rtlpriv, COMP_INIT, DBG_LOUD,
472f1d2b4d3SLarry Finger "U-efuse\n", tmpdata, 8);
473f1d2b4d3SLarry Finger
474f1d2b4d3SLarry Finger if (!efuse_pg_packet_write(hw, (u8) offset, word_en,
475f1d2b4d3SLarry Finger tmpdata)) {
476f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_ERR, DBG_WARNING,
477f1d2b4d3SLarry Finger "PG section(%#x) fail!!\n", offset);
478f1d2b4d3SLarry Finger break;
479f1d2b4d3SLarry Finger }
480f1d2b4d3SLarry Finger }
481f1d2b4d3SLarry Finger }
482f1d2b4d3SLarry Finger
483f1d2b4d3SLarry Finger efuse_power_switch(hw, true, false);
484f1d2b4d3SLarry Finger efuse_read_all_map(hw, &rtlefuse->efuse_map[EFUSE_INIT_MAP][0]);
485f1d2b4d3SLarry Finger
486f1d2b4d3SLarry Finger memcpy(&rtlefuse->efuse_map[EFUSE_MODIFY_MAP][0],
487f1d2b4d3SLarry Finger &rtlefuse->efuse_map[EFUSE_INIT_MAP][0],
488f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_HWSET_MAX_SIZE]);
489f1d2b4d3SLarry Finger
490f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_EFUSE, DBG_LOUD, "\n");
491f1d2b4d3SLarry Finger return true;
492f1d2b4d3SLarry Finger }
493f1d2b4d3SLarry Finger
rtl_efuse_shadow_map_update(struct ieee80211_hw * hw)494f1d2b4d3SLarry Finger void rtl_efuse_shadow_map_update(struct ieee80211_hw *hw)
495f1d2b4d3SLarry Finger {
496f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
497f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
498f1d2b4d3SLarry Finger
499f1d2b4d3SLarry Finger if (rtlefuse->autoload_failflag)
500f1d2b4d3SLarry Finger memset((&rtlefuse->efuse_map[EFUSE_INIT_MAP][0]),
501f1d2b4d3SLarry Finger 0xFF, rtlpriv->cfg->maps[EFUSE_HWSET_MAX_SIZE]);
502f1d2b4d3SLarry Finger else
503f1d2b4d3SLarry Finger efuse_read_all_map(hw, &rtlefuse->efuse_map[EFUSE_INIT_MAP][0]);
504f1d2b4d3SLarry Finger
505f1d2b4d3SLarry Finger memcpy(&rtlefuse->efuse_map[EFUSE_MODIFY_MAP][0],
506f1d2b4d3SLarry Finger &rtlefuse->efuse_map[EFUSE_INIT_MAP][0],
507f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_HWSET_MAX_SIZE]);
508f1d2b4d3SLarry Finger
509f1d2b4d3SLarry Finger }
510f1d2b4d3SLarry Finger EXPORT_SYMBOL(rtl_efuse_shadow_map_update);
511f1d2b4d3SLarry Finger
efuse_force_write_vendor_id(struct ieee80211_hw * hw)512e703c5ddSLarry Finger void efuse_force_write_vendor_id(struct ieee80211_hw *hw)
513f1d2b4d3SLarry Finger {
514f1d2b4d3SLarry Finger u8 tmpdata[8] = { 0xFF, 0xFF, 0xEC, 0x10, 0xFF, 0xFF, 0xFF, 0xFF };
515f1d2b4d3SLarry Finger
516f1d2b4d3SLarry Finger efuse_power_switch(hw, true, true);
517f1d2b4d3SLarry Finger
518f1d2b4d3SLarry Finger efuse_pg_packet_write(hw, 1, 0xD, tmpdata);
519f1d2b4d3SLarry Finger
520f1d2b4d3SLarry Finger efuse_power_switch(hw, true, false);
521f1d2b4d3SLarry Finger
522f1d2b4d3SLarry Finger }
523f1d2b4d3SLarry Finger
efuse_re_pg_section(struct ieee80211_hw * hw,u8 section_idx)524f1d2b4d3SLarry Finger void efuse_re_pg_section(struct ieee80211_hw *hw, u8 section_idx)
525f1d2b4d3SLarry Finger {
526f1d2b4d3SLarry Finger }
527f1d2b4d3SLarry Finger
efuse_shadow_read_1byte(struct ieee80211_hw * hw,u16 offset,u8 * value)528f1d2b4d3SLarry Finger static void efuse_shadow_read_1byte(struct ieee80211_hw *hw,
529f1d2b4d3SLarry Finger u16 offset, u8 *value)
530f1d2b4d3SLarry Finger {
531f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
532f1d2b4d3SLarry Finger *value = rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset];
533f1d2b4d3SLarry Finger }
534f1d2b4d3SLarry Finger
efuse_shadow_read_2byte(struct ieee80211_hw * hw,u16 offset,u16 * value)535f1d2b4d3SLarry Finger static void efuse_shadow_read_2byte(struct ieee80211_hw *hw,
536f1d2b4d3SLarry Finger u16 offset, u16 *value)
537f1d2b4d3SLarry Finger {
538f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
539f1d2b4d3SLarry Finger
540f1d2b4d3SLarry Finger *value = rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset];
541f1d2b4d3SLarry Finger *value |= rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset + 1] << 8;
542f1d2b4d3SLarry Finger
543f1d2b4d3SLarry Finger }
544f1d2b4d3SLarry Finger
efuse_shadow_read_4byte(struct ieee80211_hw * hw,u16 offset,u32 * value)545f1d2b4d3SLarry Finger static void efuse_shadow_read_4byte(struct ieee80211_hw *hw,
546f1d2b4d3SLarry Finger u16 offset, u32 *value)
547f1d2b4d3SLarry Finger {
548f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
549f1d2b4d3SLarry Finger
550f1d2b4d3SLarry Finger *value = rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset];
551f1d2b4d3SLarry Finger *value |= rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset + 1] << 8;
552f1d2b4d3SLarry Finger *value |= rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset + 2] << 16;
553f1d2b4d3SLarry Finger *value |= rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset + 3] << 24;
554f1d2b4d3SLarry Finger }
555f1d2b4d3SLarry Finger
efuse_shadow_write_1byte(struct ieee80211_hw * hw,u16 offset,u8 value)556f1d2b4d3SLarry Finger static void efuse_shadow_write_1byte(struct ieee80211_hw *hw,
557f1d2b4d3SLarry Finger u16 offset, u8 value)
558f1d2b4d3SLarry Finger {
559f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
560f1d2b4d3SLarry Finger
561f1d2b4d3SLarry Finger rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset] = value;
562f1d2b4d3SLarry Finger }
563f1d2b4d3SLarry Finger
efuse_shadow_write_2byte(struct ieee80211_hw * hw,u16 offset,u16 value)564f1d2b4d3SLarry Finger static void efuse_shadow_write_2byte(struct ieee80211_hw *hw,
565f1d2b4d3SLarry Finger u16 offset, u16 value)
566f1d2b4d3SLarry Finger {
567f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
568f1d2b4d3SLarry Finger
569f1d2b4d3SLarry Finger rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset] = value & 0x00FF;
570f1d2b4d3SLarry Finger rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset + 1] = value >> 8;
571f1d2b4d3SLarry Finger
572f1d2b4d3SLarry Finger }
573f1d2b4d3SLarry Finger
efuse_shadow_write_4byte(struct ieee80211_hw * hw,u16 offset,u32 value)574f1d2b4d3SLarry Finger static void efuse_shadow_write_4byte(struct ieee80211_hw *hw,
575f1d2b4d3SLarry Finger u16 offset, u32 value)
576f1d2b4d3SLarry Finger {
577f1d2b4d3SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
578f1d2b4d3SLarry Finger
579f1d2b4d3SLarry Finger rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset] =
580f1d2b4d3SLarry Finger (u8) (value & 0x000000FF);
581f1d2b4d3SLarry Finger rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset + 1] =
582f1d2b4d3SLarry Finger (u8) ((value >> 8) & 0x0000FF);
583f1d2b4d3SLarry Finger rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset + 2] =
584f1d2b4d3SLarry Finger (u8) ((value >> 16) & 0x00FF);
585f1d2b4d3SLarry Finger rtlefuse->efuse_map[EFUSE_MODIFY_MAP][offset + 3] =
586f1d2b4d3SLarry Finger (u8) ((value >> 24) & 0xFF);
587f1d2b4d3SLarry Finger
588f1d2b4d3SLarry Finger }
589f1d2b4d3SLarry Finger
efuse_one_byte_read(struct ieee80211_hw * hw,u16 addr,u8 * data)590f1d2b4d3SLarry Finger int efuse_one_byte_read(struct ieee80211_hw *hw, u16 addr, u8 *data)
591f1d2b4d3SLarry Finger {
592f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
593f1d2b4d3SLarry Finger u8 tmpidx = 0;
594f1d2b4d3SLarry Finger int result;
595f1d2b4d3SLarry Finger
596f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 1,
597f1d2b4d3SLarry Finger (u8) (addr & 0xff));
598f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 2,
599f1d2b4d3SLarry Finger ((u8) ((addr >> 8) & 0x03)) |
600f1d2b4d3SLarry Finger (rtl_read_byte(rtlpriv,
601f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL] + 2) &
602f1d2b4d3SLarry Finger 0xFC));
603f1d2b4d3SLarry Finger
604f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 3, 0x72);
605f1d2b4d3SLarry Finger
606f1d2b4d3SLarry Finger while (!(0x80 & rtl_read_byte(rtlpriv,
607f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL] + 3))
608f1d2b4d3SLarry Finger && (tmpidx < 100)) {
609f1d2b4d3SLarry Finger tmpidx++;
610f1d2b4d3SLarry Finger }
611f1d2b4d3SLarry Finger
612f1d2b4d3SLarry Finger if (tmpidx < 100) {
613f1d2b4d3SLarry Finger *data = rtl_read_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL]);
614f1d2b4d3SLarry Finger result = true;
615f1d2b4d3SLarry Finger } else {
616f1d2b4d3SLarry Finger *data = 0xff;
617f1d2b4d3SLarry Finger result = false;
618f1d2b4d3SLarry Finger }
619f1d2b4d3SLarry Finger return result;
620f1d2b4d3SLarry Finger }
621f1d2b4d3SLarry Finger EXPORT_SYMBOL(efuse_one_byte_read);
622f1d2b4d3SLarry Finger
efuse_one_byte_write(struct ieee80211_hw * hw,u16 addr,u8 data)623f1d2b4d3SLarry Finger static int efuse_one_byte_write(struct ieee80211_hw *hw, u16 addr, u8 data)
624f1d2b4d3SLarry Finger {
625f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
626f1d2b4d3SLarry Finger u8 tmpidx = 0;
627f1d2b4d3SLarry Finger
628f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_EFUSE, DBG_LOUD,
629f1d2b4d3SLarry Finger "Addr = %x Data=%x\n", addr, data);
630f1d2b4d3SLarry Finger
631f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv,
632f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL] + 1, (u8) (addr & 0xff));
633f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 2,
634f1d2b4d3SLarry Finger (rtl_read_byte(rtlpriv,
635f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL] +
636f1d2b4d3SLarry Finger 2) & 0xFC) | (u8) ((addr >> 8) & 0x03));
637f1d2b4d3SLarry Finger
638f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL], data);
639f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CTRL] + 3, 0xF2);
640f1d2b4d3SLarry Finger
641f1d2b4d3SLarry Finger while ((0x80 & rtl_read_byte(rtlpriv,
642f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_CTRL] + 3))
643f1d2b4d3SLarry Finger && (tmpidx < 100)) {
644f1d2b4d3SLarry Finger tmpidx++;
645f1d2b4d3SLarry Finger }
646f1d2b4d3SLarry Finger
647f1d2b4d3SLarry Finger if (tmpidx < 100)
648f1d2b4d3SLarry Finger return true;
649f1d2b4d3SLarry Finger return false;
650f1d2b4d3SLarry Finger }
651f1d2b4d3SLarry Finger
efuse_read_all_map(struct ieee80211_hw * hw,u8 * efuse)652f1d2b4d3SLarry Finger static void efuse_read_all_map(struct ieee80211_hw *hw, u8 *efuse)
653f1d2b4d3SLarry Finger {
654f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
655b16abaafSLarry Finger
656f1d2b4d3SLarry Finger efuse_power_switch(hw, false, true);
657f1d2b4d3SLarry Finger read_efuse(hw, 0, rtlpriv->cfg->maps[EFUSE_HWSET_MAX_SIZE], efuse);
658f1d2b4d3SLarry Finger efuse_power_switch(hw, false, false);
659f1d2b4d3SLarry Finger }
660f1d2b4d3SLarry Finger
efuse_read_data_case1(struct ieee80211_hw * hw,u16 * efuse_addr,u8 efuse_data,u8 offset,u8 * tmpdata,u8 * readstate)661f1d2b4d3SLarry Finger static void efuse_read_data_case1(struct ieee80211_hw *hw, u16 *efuse_addr,
662f1d2b4d3SLarry Finger u8 efuse_data, u8 offset, u8 *tmpdata,
663f1d2b4d3SLarry Finger u8 *readstate)
664f1d2b4d3SLarry Finger {
665f1d2b4d3SLarry Finger bool dataempty = true;
666f1d2b4d3SLarry Finger u8 hoffset;
667f1d2b4d3SLarry Finger u8 tmpidx;
668f1d2b4d3SLarry Finger u8 hworden;
669f1d2b4d3SLarry Finger u8 word_cnts;
670f1d2b4d3SLarry Finger
671f1d2b4d3SLarry Finger hoffset = (efuse_data >> 4) & 0x0F;
672f1d2b4d3SLarry Finger hworden = efuse_data & 0x0F;
673f1d2b4d3SLarry Finger word_cnts = efuse_calculate_word_cnts(hworden);
674f1d2b4d3SLarry Finger
675f1d2b4d3SLarry Finger if (hoffset == offset) {
676f1d2b4d3SLarry Finger for (tmpidx = 0; tmpidx < word_cnts * 2; tmpidx++) {
677f1d2b4d3SLarry Finger if (efuse_one_byte_read(hw, *efuse_addr + 1 + tmpidx,
678f1d2b4d3SLarry Finger &efuse_data)) {
679f1d2b4d3SLarry Finger tmpdata[tmpidx] = efuse_data;
680f1d2b4d3SLarry Finger if (efuse_data != 0xff)
681f1d2b4d3SLarry Finger dataempty = false;
682f1d2b4d3SLarry Finger }
683f1d2b4d3SLarry Finger }
684f1d2b4d3SLarry Finger
685f1d2b4d3SLarry Finger if (!dataempty) {
686f1d2b4d3SLarry Finger *readstate = PG_STATE_DATA;
687f1d2b4d3SLarry Finger } else {
688f1d2b4d3SLarry Finger *efuse_addr = *efuse_addr + (word_cnts * 2) + 1;
689f1d2b4d3SLarry Finger *readstate = PG_STATE_HEADER;
690f1d2b4d3SLarry Finger }
691f1d2b4d3SLarry Finger
692f1d2b4d3SLarry Finger } else {
693f1d2b4d3SLarry Finger *efuse_addr = *efuse_addr + (word_cnts * 2) + 1;
694f1d2b4d3SLarry Finger *readstate = PG_STATE_HEADER;
695f1d2b4d3SLarry Finger }
696f1d2b4d3SLarry Finger }
697f1d2b4d3SLarry Finger
efuse_pg_packet_read(struct ieee80211_hw * hw,u8 offset,u8 * data)698f1d2b4d3SLarry Finger static int efuse_pg_packet_read(struct ieee80211_hw *hw, u8 offset, u8 *data)
699f1d2b4d3SLarry Finger {
700f1d2b4d3SLarry Finger u8 readstate = PG_STATE_HEADER;
701f1d2b4d3SLarry Finger
702f1d2b4d3SLarry Finger bool continual = true;
703f1d2b4d3SLarry Finger
704f1d2b4d3SLarry Finger u8 efuse_data, word_cnts = 0;
705f1d2b4d3SLarry Finger u16 efuse_addr = 0;
706f1d2b4d3SLarry Finger u8 tmpdata[8];
707f1d2b4d3SLarry Finger
708f1d2b4d3SLarry Finger if (data == NULL)
709f1d2b4d3SLarry Finger return false;
710f1d2b4d3SLarry Finger if (offset > 15)
711f1d2b4d3SLarry Finger return false;
712f1d2b4d3SLarry Finger
713f1d2b4d3SLarry Finger memset(data, 0xff, PGPKT_DATA_SIZE * sizeof(u8));
714f1d2b4d3SLarry Finger memset(tmpdata, 0xff, PGPKT_DATA_SIZE * sizeof(u8));
715f1d2b4d3SLarry Finger
716f1d2b4d3SLarry Finger while (continual && (efuse_addr < EFUSE_MAX_SIZE)) {
717f1d2b4d3SLarry Finger if (readstate & PG_STATE_HEADER) {
718f1d2b4d3SLarry Finger if (efuse_one_byte_read(hw, efuse_addr, &efuse_data)
719f1d2b4d3SLarry Finger && (efuse_data != 0xFF))
720f1d2b4d3SLarry Finger efuse_read_data_case1(hw, &efuse_addr,
721f1d2b4d3SLarry Finger efuse_data, offset,
722f1d2b4d3SLarry Finger tmpdata, &readstate);
723f1d2b4d3SLarry Finger else
724f1d2b4d3SLarry Finger continual = false;
725f1d2b4d3SLarry Finger } else if (readstate & PG_STATE_DATA) {
726f1d2b4d3SLarry Finger efuse_word_enable_data_read(0, tmpdata, data);
727f1d2b4d3SLarry Finger efuse_addr = efuse_addr + (word_cnts * 2) + 1;
728f1d2b4d3SLarry Finger readstate = PG_STATE_HEADER;
729f1d2b4d3SLarry Finger }
730f1d2b4d3SLarry Finger
731f1d2b4d3SLarry Finger }
732f1d2b4d3SLarry Finger
733f1d2b4d3SLarry Finger if ((data[0] == 0xff) && (data[1] == 0xff) &&
734f1d2b4d3SLarry Finger (data[2] == 0xff) && (data[3] == 0xff) &&
735f1d2b4d3SLarry Finger (data[4] == 0xff) && (data[5] == 0xff) &&
736f1d2b4d3SLarry Finger (data[6] == 0xff) && (data[7] == 0xff))
737f1d2b4d3SLarry Finger return false;
738f1d2b4d3SLarry Finger else
739f1d2b4d3SLarry Finger return true;
740f1d2b4d3SLarry Finger
741f1d2b4d3SLarry Finger }
742f1d2b4d3SLarry Finger
efuse_write_data_case1(struct ieee80211_hw * hw,u16 * efuse_addr,u8 efuse_data,u8 offset,int * continual,u8 * write_state,struct pgpkt_struct * target_pkt,int * repeat_times,int * result,u8 word_en)743f1d2b4d3SLarry Finger static void efuse_write_data_case1(struct ieee80211_hw *hw, u16 *efuse_addr,
744f1d2b4d3SLarry Finger u8 efuse_data, u8 offset,
745f1d2b4d3SLarry Finger int *continual, u8 *write_state,
746f1d2b4d3SLarry Finger struct pgpkt_struct *target_pkt,
747f1d2b4d3SLarry Finger int *repeat_times, int *result, u8 word_en)
748f1d2b4d3SLarry Finger {
749f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
750f1d2b4d3SLarry Finger struct pgpkt_struct tmp_pkt;
751f1d2b4d3SLarry Finger int dataempty = true;
752f1d2b4d3SLarry Finger u8 originaldata[8 * sizeof(u8)];
753f1d2b4d3SLarry Finger u8 badworden = 0x0F;
754f1d2b4d3SLarry Finger u8 match_word_en, tmp_word_en;
755f1d2b4d3SLarry Finger u8 tmpindex;
756f1d2b4d3SLarry Finger u8 tmp_header = efuse_data;
757f1d2b4d3SLarry Finger u8 tmp_word_cnts;
758f1d2b4d3SLarry Finger
759f1d2b4d3SLarry Finger tmp_pkt.offset = (tmp_header >> 4) & 0x0F;
760f1d2b4d3SLarry Finger tmp_pkt.word_en = tmp_header & 0x0F;
761f1d2b4d3SLarry Finger tmp_word_cnts = efuse_calculate_word_cnts(tmp_pkt.word_en);
762f1d2b4d3SLarry Finger
763f1d2b4d3SLarry Finger if (tmp_pkt.offset != target_pkt->offset) {
764f1d2b4d3SLarry Finger *efuse_addr = *efuse_addr + (tmp_word_cnts * 2) + 1;
765f1d2b4d3SLarry Finger *write_state = PG_STATE_HEADER;
766f1d2b4d3SLarry Finger } else {
767f1d2b4d3SLarry Finger for (tmpindex = 0; tmpindex < (tmp_word_cnts * 2); tmpindex++) {
768f1d2b4d3SLarry Finger if (efuse_one_byte_read(hw,
769f1d2b4d3SLarry Finger (*efuse_addr + 1 + tmpindex),
770f1d2b4d3SLarry Finger &efuse_data) &&
771f1d2b4d3SLarry Finger (efuse_data != 0xFF))
772f1d2b4d3SLarry Finger dataempty = false;
773f1d2b4d3SLarry Finger }
774f1d2b4d3SLarry Finger
775f1d2b4d3SLarry Finger if (!dataempty) {
776f1d2b4d3SLarry Finger *efuse_addr = *efuse_addr + (tmp_word_cnts * 2) + 1;
777f1d2b4d3SLarry Finger *write_state = PG_STATE_HEADER;
778f1d2b4d3SLarry Finger } else {
779f1d2b4d3SLarry Finger match_word_en = 0x0F;
780f1d2b4d3SLarry Finger if (!((target_pkt->word_en & BIT(0)) |
781f1d2b4d3SLarry Finger (tmp_pkt.word_en & BIT(0))))
782f1d2b4d3SLarry Finger match_word_en &= (~BIT(0));
783f1d2b4d3SLarry Finger
784f1d2b4d3SLarry Finger if (!((target_pkt->word_en & BIT(1)) |
785f1d2b4d3SLarry Finger (tmp_pkt.word_en & BIT(1))))
786f1d2b4d3SLarry Finger match_word_en &= (~BIT(1));
787f1d2b4d3SLarry Finger
788f1d2b4d3SLarry Finger if (!((target_pkt->word_en & BIT(2)) |
789f1d2b4d3SLarry Finger (tmp_pkt.word_en & BIT(2))))
790f1d2b4d3SLarry Finger match_word_en &= (~BIT(2));
791f1d2b4d3SLarry Finger
792f1d2b4d3SLarry Finger if (!((target_pkt->word_en & BIT(3)) |
793f1d2b4d3SLarry Finger (tmp_pkt.word_en & BIT(3))))
794f1d2b4d3SLarry Finger match_word_en &= (~BIT(3));
795f1d2b4d3SLarry Finger
796f1d2b4d3SLarry Finger if ((match_word_en & 0x0F) != 0x0F) {
797f1d2b4d3SLarry Finger badworden =
798f1d2b4d3SLarry Finger enable_efuse_data_write(hw,
799f1d2b4d3SLarry Finger *efuse_addr + 1,
800f1d2b4d3SLarry Finger tmp_pkt.word_en,
801f1d2b4d3SLarry Finger target_pkt->data);
802f1d2b4d3SLarry Finger
803f1d2b4d3SLarry Finger if (0x0F != (badworden & 0x0F)) {
804f1d2b4d3SLarry Finger u8 reorg_offset = offset;
805f1d2b4d3SLarry Finger u8 reorg_worden = badworden;
806b16abaafSLarry Finger
807f1d2b4d3SLarry Finger efuse_pg_packet_write(hw, reorg_offset,
808f1d2b4d3SLarry Finger reorg_worden,
809f1d2b4d3SLarry Finger originaldata);
810f1d2b4d3SLarry Finger }
811f1d2b4d3SLarry Finger
812f1d2b4d3SLarry Finger tmp_word_en = 0x0F;
813f1d2b4d3SLarry Finger if ((target_pkt->word_en & BIT(0)) ^
814f1d2b4d3SLarry Finger (match_word_en & BIT(0)))
815f1d2b4d3SLarry Finger tmp_word_en &= (~BIT(0));
816f1d2b4d3SLarry Finger
817f1d2b4d3SLarry Finger if ((target_pkt->word_en & BIT(1)) ^
818f1d2b4d3SLarry Finger (match_word_en & BIT(1)))
819f1d2b4d3SLarry Finger tmp_word_en &= (~BIT(1));
820f1d2b4d3SLarry Finger
821f1d2b4d3SLarry Finger if ((target_pkt->word_en & BIT(2)) ^
822f1d2b4d3SLarry Finger (match_word_en & BIT(2)))
823f1d2b4d3SLarry Finger tmp_word_en &= (~BIT(2));
824f1d2b4d3SLarry Finger
825f1d2b4d3SLarry Finger if ((target_pkt->word_en & BIT(3)) ^
826f1d2b4d3SLarry Finger (match_word_en & BIT(3)))
827f1d2b4d3SLarry Finger tmp_word_en &= (~BIT(3));
828f1d2b4d3SLarry Finger
829f1d2b4d3SLarry Finger if ((tmp_word_en & 0x0F) != 0x0F) {
830f1d2b4d3SLarry Finger *efuse_addr = efuse_get_current_size(hw);
831f1d2b4d3SLarry Finger target_pkt->offset = offset;
832f1d2b4d3SLarry Finger target_pkt->word_en = tmp_word_en;
833f1d2b4d3SLarry Finger } else {
834f1d2b4d3SLarry Finger *continual = false;
835f1d2b4d3SLarry Finger }
836f1d2b4d3SLarry Finger *write_state = PG_STATE_HEADER;
837f1d2b4d3SLarry Finger *repeat_times += 1;
838f1d2b4d3SLarry Finger if (*repeat_times > EFUSE_REPEAT_THRESHOLD_) {
839f1d2b4d3SLarry Finger *continual = false;
840f1d2b4d3SLarry Finger *result = false;
841f1d2b4d3SLarry Finger }
842f1d2b4d3SLarry Finger } else {
843f1d2b4d3SLarry Finger *efuse_addr += (2 * tmp_word_cnts) + 1;
844f1d2b4d3SLarry Finger target_pkt->offset = offset;
845f1d2b4d3SLarry Finger target_pkt->word_en = word_en;
846f1d2b4d3SLarry Finger *write_state = PG_STATE_HEADER;
847f1d2b4d3SLarry Finger }
848f1d2b4d3SLarry Finger }
849f1d2b4d3SLarry Finger }
850f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FEEPROM, EFUSE_PG, "efuse PG_STATE_HEADER-1\n");
851f1d2b4d3SLarry Finger }
852f1d2b4d3SLarry Finger
efuse_write_data_case2(struct ieee80211_hw * hw,u16 * efuse_addr,int * continual,u8 * write_state,struct pgpkt_struct target_pkt,int * repeat_times,int * result)853f1d2b4d3SLarry Finger static void efuse_write_data_case2(struct ieee80211_hw *hw, u16 *efuse_addr,
854f1d2b4d3SLarry Finger int *continual, u8 *write_state,
855f1d2b4d3SLarry Finger struct pgpkt_struct target_pkt,
856f1d2b4d3SLarry Finger int *repeat_times, int *result)
857f1d2b4d3SLarry Finger {
858f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
859f1d2b4d3SLarry Finger struct pgpkt_struct tmp_pkt;
860f1d2b4d3SLarry Finger u8 pg_header;
861f1d2b4d3SLarry Finger u8 tmp_header;
862f1d2b4d3SLarry Finger u8 originaldata[8 * sizeof(u8)];
863f1d2b4d3SLarry Finger u8 tmp_word_cnts;
864f1d2b4d3SLarry Finger u8 badworden = 0x0F;
865f1d2b4d3SLarry Finger
866f1d2b4d3SLarry Finger pg_header = ((target_pkt.offset << 4) & 0xf0) | target_pkt.word_en;
867f1d2b4d3SLarry Finger efuse_one_byte_write(hw, *efuse_addr, pg_header);
868f1d2b4d3SLarry Finger efuse_one_byte_read(hw, *efuse_addr, &tmp_header);
869f1d2b4d3SLarry Finger
870f1d2b4d3SLarry Finger if (tmp_header == pg_header) {
871f1d2b4d3SLarry Finger *write_state = PG_STATE_DATA;
872f1d2b4d3SLarry Finger } else if (tmp_header == 0xFF) {
873f1d2b4d3SLarry Finger *write_state = PG_STATE_HEADER;
874f1d2b4d3SLarry Finger *repeat_times += 1;
875f1d2b4d3SLarry Finger if (*repeat_times > EFUSE_REPEAT_THRESHOLD_) {
876f1d2b4d3SLarry Finger *continual = false;
877f1d2b4d3SLarry Finger *result = false;
878f1d2b4d3SLarry Finger }
879f1d2b4d3SLarry Finger } else {
880f1d2b4d3SLarry Finger tmp_pkt.offset = (tmp_header >> 4) & 0x0F;
881f1d2b4d3SLarry Finger tmp_pkt.word_en = tmp_header & 0x0F;
882f1d2b4d3SLarry Finger
883f1d2b4d3SLarry Finger tmp_word_cnts = efuse_calculate_word_cnts(tmp_pkt.word_en);
884f1d2b4d3SLarry Finger
885f1d2b4d3SLarry Finger memset(originaldata, 0xff, 8 * sizeof(u8));
886f1d2b4d3SLarry Finger
887f1d2b4d3SLarry Finger if (efuse_pg_packet_read(hw, tmp_pkt.offset, originaldata)) {
888f1d2b4d3SLarry Finger badworden = enable_efuse_data_write(hw,
889f1d2b4d3SLarry Finger *efuse_addr + 1,
890f1d2b4d3SLarry Finger tmp_pkt.word_en,
891f1d2b4d3SLarry Finger originaldata);
892f1d2b4d3SLarry Finger
893f1d2b4d3SLarry Finger if (0x0F != (badworden & 0x0F)) {
894f1d2b4d3SLarry Finger u8 reorg_offset = tmp_pkt.offset;
895f1d2b4d3SLarry Finger u8 reorg_worden = badworden;
896b16abaafSLarry Finger
897f1d2b4d3SLarry Finger efuse_pg_packet_write(hw, reorg_offset,
898f1d2b4d3SLarry Finger reorg_worden,
899f1d2b4d3SLarry Finger originaldata);
900f1d2b4d3SLarry Finger *efuse_addr = efuse_get_current_size(hw);
901f1d2b4d3SLarry Finger } else {
902f1d2b4d3SLarry Finger *efuse_addr = *efuse_addr +
903f1d2b4d3SLarry Finger (tmp_word_cnts * 2) + 1;
904f1d2b4d3SLarry Finger }
905f1d2b4d3SLarry Finger } else {
906f1d2b4d3SLarry Finger *efuse_addr = *efuse_addr + (tmp_word_cnts * 2) + 1;
907f1d2b4d3SLarry Finger }
908f1d2b4d3SLarry Finger
909f1d2b4d3SLarry Finger *write_state = PG_STATE_HEADER;
910f1d2b4d3SLarry Finger *repeat_times += 1;
911f1d2b4d3SLarry Finger if (*repeat_times > EFUSE_REPEAT_THRESHOLD_) {
912f1d2b4d3SLarry Finger *continual = false;
913f1d2b4d3SLarry Finger *result = false;
914f1d2b4d3SLarry Finger }
915f1d2b4d3SLarry Finger
916f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FEEPROM, EFUSE_PG,
917f1d2b4d3SLarry Finger "efuse PG_STATE_HEADER-2\n");
918f1d2b4d3SLarry Finger }
919f1d2b4d3SLarry Finger }
920f1d2b4d3SLarry Finger
efuse_pg_packet_write(struct ieee80211_hw * hw,u8 offset,u8 word_en,u8 * data)921f1d2b4d3SLarry Finger static int efuse_pg_packet_write(struct ieee80211_hw *hw,
922f1d2b4d3SLarry Finger u8 offset, u8 word_en, u8 *data)
923f1d2b4d3SLarry Finger {
924f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
925f1d2b4d3SLarry Finger struct pgpkt_struct target_pkt;
926f1d2b4d3SLarry Finger u8 write_state = PG_STATE_HEADER;
92770906d94Szhengbin int continual = true, result = true;
928f1d2b4d3SLarry Finger u16 efuse_addr = 0;
929f1d2b4d3SLarry Finger u8 efuse_data;
930f1d2b4d3SLarry Finger u8 target_word_cnts = 0;
931f1d2b4d3SLarry Finger u8 badworden = 0x0F;
932f1d2b4d3SLarry Finger static int repeat_times;
933f1d2b4d3SLarry Finger
934f1d2b4d3SLarry Finger if (efuse_get_current_size(hw) >= (EFUSE_MAX_SIZE -
935f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_OOB_PROTECT_BYTES_LEN])) {
936f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FEEPROM, EFUSE_PG,
937f1d2b4d3SLarry Finger "efuse_pg_packet_write error\n");
938f1d2b4d3SLarry Finger return false;
939f1d2b4d3SLarry Finger }
940f1d2b4d3SLarry Finger
941f1d2b4d3SLarry Finger target_pkt.offset = offset;
942f1d2b4d3SLarry Finger target_pkt.word_en = word_en;
943f1d2b4d3SLarry Finger
944f1d2b4d3SLarry Finger memset(target_pkt.data, 0xFF, 8 * sizeof(u8));
945f1d2b4d3SLarry Finger
946f1d2b4d3SLarry Finger efuse_word_enable_data_read(word_en, data, target_pkt.data);
947f1d2b4d3SLarry Finger target_word_cnts = efuse_calculate_word_cnts(target_pkt.word_en);
948f1d2b4d3SLarry Finger
949f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FEEPROM, EFUSE_PG, "efuse Power ON\n");
950f1d2b4d3SLarry Finger
951f1d2b4d3SLarry Finger while (continual && (efuse_addr < (EFUSE_MAX_SIZE -
952f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_OOB_PROTECT_BYTES_LEN]))) {
953f1d2b4d3SLarry Finger if (write_state == PG_STATE_HEADER) {
954f1d2b4d3SLarry Finger badworden = 0x0F;
955f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FEEPROM, EFUSE_PG,
956f1d2b4d3SLarry Finger "efuse PG_STATE_HEADER\n");
957f1d2b4d3SLarry Finger
958f1d2b4d3SLarry Finger if (efuse_one_byte_read(hw, efuse_addr, &efuse_data) &&
959f1d2b4d3SLarry Finger (efuse_data != 0xFF))
960f1d2b4d3SLarry Finger efuse_write_data_case1(hw, &efuse_addr,
961f1d2b4d3SLarry Finger efuse_data, offset,
962f1d2b4d3SLarry Finger &continual,
963f1d2b4d3SLarry Finger &write_state,
964f1d2b4d3SLarry Finger &target_pkt,
965f1d2b4d3SLarry Finger &repeat_times, &result,
966f1d2b4d3SLarry Finger word_en);
967f1d2b4d3SLarry Finger else
968f1d2b4d3SLarry Finger efuse_write_data_case2(hw, &efuse_addr,
969f1d2b4d3SLarry Finger &continual,
970f1d2b4d3SLarry Finger &write_state,
971f1d2b4d3SLarry Finger target_pkt,
972f1d2b4d3SLarry Finger &repeat_times,
973f1d2b4d3SLarry Finger &result);
974f1d2b4d3SLarry Finger
975f1d2b4d3SLarry Finger } else if (write_state == PG_STATE_DATA) {
976f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FEEPROM, EFUSE_PG,
977f1d2b4d3SLarry Finger "efuse PG_STATE_DATA\n");
978f1d2b4d3SLarry Finger badworden =
979f1d2b4d3SLarry Finger enable_efuse_data_write(hw, efuse_addr + 1,
980f1d2b4d3SLarry Finger target_pkt.word_en,
981f1d2b4d3SLarry Finger target_pkt.data);
982f1d2b4d3SLarry Finger
983f1d2b4d3SLarry Finger if ((badworden & 0x0F) == 0x0F) {
984f1d2b4d3SLarry Finger continual = false;
985f1d2b4d3SLarry Finger } else {
986f1d2b4d3SLarry Finger efuse_addr =
987f1d2b4d3SLarry Finger efuse_addr + (2 * target_word_cnts) + 1;
988f1d2b4d3SLarry Finger
989f1d2b4d3SLarry Finger target_pkt.offset = offset;
990f1d2b4d3SLarry Finger target_pkt.word_en = badworden;
991f1d2b4d3SLarry Finger target_word_cnts =
992f1d2b4d3SLarry Finger efuse_calculate_word_cnts(target_pkt.
993f1d2b4d3SLarry Finger word_en);
994f1d2b4d3SLarry Finger write_state = PG_STATE_HEADER;
995f1d2b4d3SLarry Finger repeat_times++;
996f1d2b4d3SLarry Finger if (repeat_times > EFUSE_REPEAT_THRESHOLD_) {
997f1d2b4d3SLarry Finger continual = false;
998f1d2b4d3SLarry Finger result = false;
999f1d2b4d3SLarry Finger }
1000f1d2b4d3SLarry Finger RTPRINT(rtlpriv, FEEPROM, EFUSE_PG,
1001f1d2b4d3SLarry Finger "efuse PG_STATE_HEADER-3\n");
1002f1d2b4d3SLarry Finger }
1003f1d2b4d3SLarry Finger }
1004f1d2b4d3SLarry Finger }
1005f1d2b4d3SLarry Finger
1006f1d2b4d3SLarry Finger if (efuse_addr >= (EFUSE_MAX_SIZE -
1007f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_OOB_PROTECT_BYTES_LEN])) {
1008f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_EFUSE, DBG_LOUD,
1009f1d2b4d3SLarry Finger "efuse_addr(%#x) Out of size!!\n", efuse_addr);
1010f1d2b4d3SLarry Finger }
1011f1d2b4d3SLarry Finger
1012f1d2b4d3SLarry Finger return true;
1013f1d2b4d3SLarry Finger }
1014f1d2b4d3SLarry Finger
efuse_word_enable_data_read(u8 word_en,u8 * sourdata,u8 * targetdata)1015f1d2b4d3SLarry Finger static void efuse_word_enable_data_read(u8 word_en, u8 *sourdata,
1016f1d2b4d3SLarry Finger u8 *targetdata)
1017f1d2b4d3SLarry Finger {
1018f1d2b4d3SLarry Finger if (!(word_en & BIT(0))) {
1019f1d2b4d3SLarry Finger targetdata[0] = sourdata[0];
1020f1d2b4d3SLarry Finger targetdata[1] = sourdata[1];
1021f1d2b4d3SLarry Finger }
1022f1d2b4d3SLarry Finger
1023f1d2b4d3SLarry Finger if (!(word_en & BIT(1))) {
1024f1d2b4d3SLarry Finger targetdata[2] = sourdata[2];
1025f1d2b4d3SLarry Finger targetdata[3] = sourdata[3];
1026f1d2b4d3SLarry Finger }
1027f1d2b4d3SLarry Finger
1028f1d2b4d3SLarry Finger if (!(word_en & BIT(2))) {
1029f1d2b4d3SLarry Finger targetdata[4] = sourdata[4];
1030f1d2b4d3SLarry Finger targetdata[5] = sourdata[5];
1031f1d2b4d3SLarry Finger }
1032f1d2b4d3SLarry Finger
1033f1d2b4d3SLarry Finger if (!(word_en & BIT(3))) {
1034f1d2b4d3SLarry Finger targetdata[6] = sourdata[6];
1035f1d2b4d3SLarry Finger targetdata[7] = sourdata[7];
1036f1d2b4d3SLarry Finger }
1037f1d2b4d3SLarry Finger }
1038f1d2b4d3SLarry Finger
enable_efuse_data_write(struct ieee80211_hw * hw,u16 efuse_addr,u8 word_en,u8 * data)1039f1d2b4d3SLarry Finger static u8 enable_efuse_data_write(struct ieee80211_hw *hw,
1040f1d2b4d3SLarry Finger u16 efuse_addr, u8 word_en, u8 *data)
1041f1d2b4d3SLarry Finger {
1042f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
1043f1d2b4d3SLarry Finger u16 tmpaddr;
1044f1d2b4d3SLarry Finger u16 start_addr = efuse_addr;
1045f1d2b4d3SLarry Finger u8 badworden = 0x0F;
1046f1d2b4d3SLarry Finger u8 tmpdata[8];
1047f1d2b4d3SLarry Finger
1048f1d2b4d3SLarry Finger memset(tmpdata, 0xff, PGPKT_DATA_SIZE);
1049f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_EFUSE, DBG_LOUD,
1050f1d2b4d3SLarry Finger "word_en = %x efuse_addr=%x\n", word_en, efuse_addr);
1051f1d2b4d3SLarry Finger
1052f1d2b4d3SLarry Finger if (!(word_en & BIT(0))) {
1053f1d2b4d3SLarry Finger tmpaddr = start_addr;
1054f1d2b4d3SLarry Finger efuse_one_byte_write(hw, start_addr++, data[0]);
1055f1d2b4d3SLarry Finger efuse_one_byte_write(hw, start_addr++, data[1]);
1056f1d2b4d3SLarry Finger
1057f1d2b4d3SLarry Finger efuse_one_byte_read(hw, tmpaddr, &tmpdata[0]);
1058f1d2b4d3SLarry Finger efuse_one_byte_read(hw, tmpaddr + 1, &tmpdata[1]);
1059f1d2b4d3SLarry Finger if ((data[0] != tmpdata[0]) || (data[1] != tmpdata[1]))
1060f1d2b4d3SLarry Finger badworden &= (~BIT(0));
1061f1d2b4d3SLarry Finger }
1062f1d2b4d3SLarry Finger
1063f1d2b4d3SLarry Finger if (!(word_en & BIT(1))) {
1064f1d2b4d3SLarry Finger tmpaddr = start_addr;
1065f1d2b4d3SLarry Finger efuse_one_byte_write(hw, start_addr++, data[2]);
1066f1d2b4d3SLarry Finger efuse_one_byte_write(hw, start_addr++, data[3]);
1067f1d2b4d3SLarry Finger
1068f1d2b4d3SLarry Finger efuse_one_byte_read(hw, tmpaddr, &tmpdata[2]);
1069f1d2b4d3SLarry Finger efuse_one_byte_read(hw, tmpaddr + 1, &tmpdata[3]);
1070f1d2b4d3SLarry Finger if ((data[2] != tmpdata[2]) || (data[3] != tmpdata[3]))
1071f1d2b4d3SLarry Finger badworden &= (~BIT(1));
1072f1d2b4d3SLarry Finger }
1073f1d2b4d3SLarry Finger
1074f1d2b4d3SLarry Finger if (!(word_en & BIT(2))) {
1075f1d2b4d3SLarry Finger tmpaddr = start_addr;
1076f1d2b4d3SLarry Finger efuse_one_byte_write(hw, start_addr++, data[4]);
1077f1d2b4d3SLarry Finger efuse_one_byte_write(hw, start_addr++, data[5]);
1078f1d2b4d3SLarry Finger
1079f1d2b4d3SLarry Finger efuse_one_byte_read(hw, tmpaddr, &tmpdata[4]);
1080f1d2b4d3SLarry Finger efuse_one_byte_read(hw, tmpaddr + 1, &tmpdata[5]);
1081f1d2b4d3SLarry Finger if ((data[4] != tmpdata[4]) || (data[5] != tmpdata[5]))
1082f1d2b4d3SLarry Finger badworden &= (~BIT(2));
1083f1d2b4d3SLarry Finger }
1084f1d2b4d3SLarry Finger
1085f1d2b4d3SLarry Finger if (!(word_en & BIT(3))) {
1086f1d2b4d3SLarry Finger tmpaddr = start_addr;
1087f1d2b4d3SLarry Finger efuse_one_byte_write(hw, start_addr++, data[6]);
1088f1d2b4d3SLarry Finger efuse_one_byte_write(hw, start_addr++, data[7]);
1089f1d2b4d3SLarry Finger
1090f1d2b4d3SLarry Finger efuse_one_byte_read(hw, tmpaddr, &tmpdata[6]);
1091f1d2b4d3SLarry Finger efuse_one_byte_read(hw, tmpaddr + 1, &tmpdata[7]);
1092f1d2b4d3SLarry Finger if ((data[6] != tmpdata[6]) || (data[7] != tmpdata[7]))
1093f1d2b4d3SLarry Finger badworden &= (~BIT(3));
1094f1d2b4d3SLarry Finger }
1095f1d2b4d3SLarry Finger
1096f1d2b4d3SLarry Finger return badworden;
1097f1d2b4d3SLarry Finger }
1098f1d2b4d3SLarry Finger
efuse_power_switch(struct ieee80211_hw * hw,u8 write,u8 pwrstate)10997fe1fe75SPing-Ke Shih void efuse_power_switch(struct ieee80211_hw *hw, u8 write, u8 pwrstate)
1100f1d2b4d3SLarry Finger {
1101f1d2b4d3SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
1102f1d2b4d3SLarry Finger struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
1103f1d2b4d3SLarry Finger u8 tempval;
1104e703c5ddSLarry Finger u16 tmpv16;
1105f1d2b4d3SLarry Finger
1106f1d2b4d3SLarry Finger if (pwrstate && (rtlhal->hw_type != HARDWARE_TYPE_RTL8192SE)) {
1107f1d2b4d3SLarry Finger if (rtlhal->hw_type != HARDWARE_TYPE_RTL8192CE &&
1108f1d2b4d3SLarry Finger rtlhal->hw_type != HARDWARE_TYPE_RTL8192DE) {
1109f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv,
1110f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_ACCESS], 0x69);
1111f1d2b4d3SLarry Finger } else {
1112e703c5ddSLarry Finger tmpv16 =
1113f1d2b4d3SLarry Finger rtl_read_word(rtlpriv,
1114f1d2b4d3SLarry Finger rtlpriv->cfg->maps[SYS_ISO_CTRL]);
1115e703c5ddSLarry Finger if (!(tmpv16 & rtlpriv->cfg->maps[EFUSE_PWC_EV12V])) {
1116e703c5ddSLarry Finger tmpv16 |= rtlpriv->cfg->maps[EFUSE_PWC_EV12V];
1117f1d2b4d3SLarry Finger rtl_write_word(rtlpriv,
1118f1d2b4d3SLarry Finger rtlpriv->cfg->maps[SYS_ISO_CTRL],
1119e703c5ddSLarry Finger tmpv16);
1120f1d2b4d3SLarry Finger }
1121f1d2b4d3SLarry Finger }
1122e703c5ddSLarry Finger tmpv16 = rtl_read_word(rtlpriv,
1123f1d2b4d3SLarry Finger rtlpriv->cfg->maps[SYS_FUNC_EN]);
1124e703c5ddSLarry Finger if (!(tmpv16 & rtlpriv->cfg->maps[EFUSE_FEN_ELDR])) {
1125e703c5ddSLarry Finger tmpv16 |= rtlpriv->cfg->maps[EFUSE_FEN_ELDR];
1126f1d2b4d3SLarry Finger rtl_write_word(rtlpriv,
1127e703c5ddSLarry Finger rtlpriv->cfg->maps[SYS_FUNC_EN], tmpv16);
1128f1d2b4d3SLarry Finger }
1129f1d2b4d3SLarry Finger
1130e703c5ddSLarry Finger tmpv16 = rtl_read_word(rtlpriv, rtlpriv->cfg->maps[SYS_CLK]);
1131e703c5ddSLarry Finger if ((!(tmpv16 & rtlpriv->cfg->maps[EFUSE_LOADER_CLK_EN])) ||
1132e703c5ddSLarry Finger (!(tmpv16 & rtlpriv->cfg->maps[EFUSE_ANA8M]))) {
1133e703c5ddSLarry Finger tmpv16 |= (rtlpriv->cfg->maps[EFUSE_LOADER_CLK_EN] |
1134f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_ANA8M]);
1135f1d2b4d3SLarry Finger rtl_write_word(rtlpriv,
1136e703c5ddSLarry Finger rtlpriv->cfg->maps[SYS_CLK], tmpv16);
1137f1d2b4d3SLarry Finger }
1138f1d2b4d3SLarry Finger }
1139f1d2b4d3SLarry Finger
1140f1d2b4d3SLarry Finger if (pwrstate) {
1141f1d2b4d3SLarry Finger if (write) {
1142f1d2b4d3SLarry Finger tempval = rtl_read_byte(rtlpriv,
1143f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_TEST] +
1144f1d2b4d3SLarry Finger 3);
1145f1d2b4d3SLarry Finger
1146f1d2b4d3SLarry Finger if (rtlhal->hw_type == HARDWARE_TYPE_RTL8812AE) {
1147f1d2b4d3SLarry Finger tempval &= ~(BIT(3) | BIT(4) | BIT(5) | BIT(6));
1148f1d2b4d3SLarry Finger tempval |= (VOLTAGE_V25 << 3);
1149f1d2b4d3SLarry Finger } else if (rtlhal->hw_type != HARDWARE_TYPE_RTL8192SE) {
1150f1d2b4d3SLarry Finger tempval &= 0x0F;
1151f1d2b4d3SLarry Finger tempval |= (VOLTAGE_V25 << 4);
1152f1d2b4d3SLarry Finger }
1153f1d2b4d3SLarry Finger
1154f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv,
1155f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_TEST] + 3,
1156f1d2b4d3SLarry Finger (tempval | 0x80));
1157f1d2b4d3SLarry Finger }
1158f1d2b4d3SLarry Finger
1159f1d2b4d3SLarry Finger if (rtlhal->hw_type == HARDWARE_TYPE_RTL8192SE) {
1160f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CLK],
1161f1d2b4d3SLarry Finger 0x03);
1162f1d2b4d3SLarry Finger }
1163f1d2b4d3SLarry Finger } else {
1164f1d2b4d3SLarry Finger if (rtlhal->hw_type != HARDWARE_TYPE_RTL8192CE &&
1165f1d2b4d3SLarry Finger rtlhal->hw_type != HARDWARE_TYPE_RTL8192DE)
1166f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv,
1167f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_ACCESS], 0);
1168f1d2b4d3SLarry Finger
1169f1d2b4d3SLarry Finger if (write) {
1170f1d2b4d3SLarry Finger tempval = rtl_read_byte(rtlpriv,
1171f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_TEST] +
1172f1d2b4d3SLarry Finger 3);
1173f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv,
1174f1d2b4d3SLarry Finger rtlpriv->cfg->maps[EFUSE_TEST] + 3,
1175f1d2b4d3SLarry Finger (tempval & 0x7F));
1176f1d2b4d3SLarry Finger }
1177f1d2b4d3SLarry Finger
1178f1d2b4d3SLarry Finger if (rtlhal->hw_type == HARDWARE_TYPE_RTL8192SE) {
1179f1d2b4d3SLarry Finger rtl_write_byte(rtlpriv, rtlpriv->cfg->maps[EFUSE_CLK],
1180f1d2b4d3SLarry Finger 0x02);
1181f1d2b4d3SLarry Finger }
1182f1d2b4d3SLarry Finger }
1183f1d2b4d3SLarry Finger }
11847fe1fe75SPing-Ke Shih EXPORT_SYMBOL(efuse_power_switch);
1185f1d2b4d3SLarry Finger
efuse_get_current_size(struct ieee80211_hw * hw)1186f1d2b4d3SLarry Finger static u16 efuse_get_current_size(struct ieee80211_hw *hw)
1187f1d2b4d3SLarry Finger {
1188f1d2b4d3SLarry Finger int continual = true;
1189f1d2b4d3SLarry Finger u16 efuse_addr = 0;
119070906d94Szhengbin u8 hworden;
1191f1d2b4d3SLarry Finger u8 efuse_data, word_cnts;
1192f1d2b4d3SLarry Finger
1193f1d2b4d3SLarry Finger while (continual && efuse_one_byte_read(hw, efuse_addr, &efuse_data) &&
1194f1d2b4d3SLarry Finger (efuse_addr < EFUSE_MAX_SIZE)) {
1195f1d2b4d3SLarry Finger if (efuse_data != 0xFF) {
1196f1d2b4d3SLarry Finger hworden = efuse_data & 0x0F;
1197f1d2b4d3SLarry Finger word_cnts = efuse_calculate_word_cnts(hworden);
1198f1d2b4d3SLarry Finger efuse_addr = efuse_addr + (word_cnts * 2) + 1;
1199f1d2b4d3SLarry Finger } else {
1200f1d2b4d3SLarry Finger continual = false;
1201f1d2b4d3SLarry Finger }
1202f1d2b4d3SLarry Finger }
1203f1d2b4d3SLarry Finger
1204f1d2b4d3SLarry Finger return efuse_addr;
1205f1d2b4d3SLarry Finger }
1206f1d2b4d3SLarry Finger
efuse_calculate_word_cnts(u8 word_en)1207f1d2b4d3SLarry Finger static u8 efuse_calculate_word_cnts(u8 word_en)
1208f1d2b4d3SLarry Finger {
1209f1d2b4d3SLarry Finger u8 word_cnts = 0;
1210b16abaafSLarry Finger
1211f1d2b4d3SLarry Finger if (!(word_en & BIT(0)))
1212f1d2b4d3SLarry Finger word_cnts++;
1213f1d2b4d3SLarry Finger if (!(word_en & BIT(1)))
1214f1d2b4d3SLarry Finger word_cnts++;
1215f1d2b4d3SLarry Finger if (!(word_en & BIT(2)))
1216f1d2b4d3SLarry Finger word_cnts++;
1217f1d2b4d3SLarry Finger if (!(word_en & BIT(3)))
1218f1d2b4d3SLarry Finger word_cnts++;
1219f1d2b4d3SLarry Finger return word_cnts;
1220f1d2b4d3SLarry Finger }
1221f1d2b4d3SLarry Finger
rtl_get_hwinfo(struct ieee80211_hw * hw,struct rtl_priv * rtlpriv,int max_size,u8 * hwinfo,int * params)1222edb45b67SLarry Finger int rtl_get_hwinfo(struct ieee80211_hw *hw, struct rtl_priv *rtlpriv,
1223edb45b67SLarry Finger int max_size, u8 *hwinfo, int *params)
1224edb45b67SLarry Finger {
1225edb45b67SLarry Finger struct rtl_efuse *rtlefuse = rtl_efuse(rtl_priv(hw));
1226edb45b67SLarry Finger struct rtl_pci_priv *rtlpcipriv = rtl_pcipriv(hw);
1227edb45b67SLarry Finger struct device *dev = &rtlpcipriv->dev.pdev->dev;
1228edb45b67SLarry Finger u16 eeprom_id;
1229edb45b67SLarry Finger u16 i, usvalue;
1230edb45b67SLarry Finger
1231edb45b67SLarry Finger switch (rtlefuse->epromtype) {
1232edb45b67SLarry Finger case EEPROM_BOOT_EFUSE:
1233edb45b67SLarry Finger rtl_efuse_shadow_map_update(hw);
1234edb45b67SLarry Finger break;
1235edb45b67SLarry Finger
1236edb45b67SLarry Finger case EEPROM_93C46:
1237b03d968bSLarry Finger pr_err("RTL8XXX did not boot from eeprom, check it !!\n");
1238edb45b67SLarry Finger return 1;
1239edb45b67SLarry Finger
1240edb45b67SLarry Finger default:
1241edb45b67SLarry Finger dev_warn(dev, "no efuse data\n");
1242edb45b67SLarry Finger return 1;
1243edb45b67SLarry Finger }
1244edb45b67SLarry Finger
1245edb45b67SLarry Finger memcpy(hwinfo, &rtlefuse->efuse_map[EFUSE_INIT_MAP][0], max_size);
1246edb45b67SLarry Finger
1247edb45b67SLarry Finger RT_PRINT_DATA(rtlpriv, COMP_INIT, DBG_DMESG, "MAP",
1248edb45b67SLarry Finger hwinfo, max_size);
1249edb45b67SLarry Finger
1250edb45b67SLarry Finger eeprom_id = *((u16 *)&hwinfo[0]);
1251edb45b67SLarry Finger if (eeprom_id != params[0]) {
1252f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_ERR, DBG_WARNING,
1253edb45b67SLarry Finger "EEPROM ID(%#x) is invalid!!\n", eeprom_id);
1254edb45b67SLarry Finger rtlefuse->autoload_failflag = true;
1255edb45b67SLarry Finger } else {
1256f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD, "Autoload OK\n");
1257edb45b67SLarry Finger rtlefuse->autoload_failflag = false;
1258edb45b67SLarry Finger }
1259edb45b67SLarry Finger
1260edb45b67SLarry Finger if (rtlefuse->autoload_failflag)
1261edb45b67SLarry Finger return 1;
1262edb45b67SLarry Finger
1263edb45b67SLarry Finger rtlefuse->eeprom_vid = *(u16 *)&hwinfo[params[1]];
1264edb45b67SLarry Finger rtlefuse->eeprom_did = *(u16 *)&hwinfo[params[2]];
1265edb45b67SLarry Finger rtlefuse->eeprom_svid = *(u16 *)&hwinfo[params[3]];
1266edb45b67SLarry Finger rtlefuse->eeprom_smid = *(u16 *)&hwinfo[params[4]];
1267f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1268edb45b67SLarry Finger "EEPROMId = 0x%4x\n", eeprom_id);
1269f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1270edb45b67SLarry Finger "EEPROM VID = 0x%4x\n", rtlefuse->eeprom_vid);
1271f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1272edb45b67SLarry Finger "EEPROM DID = 0x%4x\n", rtlefuse->eeprom_did);
1273f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1274edb45b67SLarry Finger "EEPROM SVID = 0x%4x\n", rtlefuse->eeprom_svid);
1275f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1276edb45b67SLarry Finger "EEPROM SMID = 0x%4x\n", rtlefuse->eeprom_smid);
1277edb45b67SLarry Finger
1278edb45b67SLarry Finger for (i = 0; i < 6; i += 2) {
1279edb45b67SLarry Finger usvalue = *(u16 *)&hwinfo[params[5] + i];
1280edb45b67SLarry Finger *((u16 *)(&rtlefuse->dev_addr[i])) = usvalue;
1281edb45b67SLarry Finger }
1282f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_INIT, DBG_DMESG, "%pM\n", rtlefuse->dev_addr);
1283edb45b67SLarry Finger
1284edb45b67SLarry Finger rtlefuse->eeprom_channelplan = *&hwinfo[params[6]];
1285edb45b67SLarry Finger rtlefuse->eeprom_version = *(u16 *)&hwinfo[params[7]];
1286edb45b67SLarry Finger rtlefuse->txpwr_fromeprom = true;
1287edb45b67SLarry Finger rtlefuse->eeprom_oemid = *&hwinfo[params[8]];
1288edb45b67SLarry Finger
1289f108a420SLarry Finger rtl_dbg(rtlpriv, COMP_INIT, DBG_LOUD,
1290edb45b67SLarry Finger "EEPROM Customer ID: 0x%2x\n", rtlefuse->eeprom_oemid);
1291edb45b67SLarry Finger
1292edb45b67SLarry Finger /* set channel plan to world wide 13 */
1293edb45b67SLarry Finger rtlefuse->channel_plan = params[9];
1294edb45b67SLarry Finger
1295edb45b67SLarry Finger return 0;
1296edb45b67SLarry Finger }
1297edb45b67SLarry Finger EXPORT_SYMBOL_GPL(rtl_get_hwinfo);
129889d32c90SLarry Finger
rtl_fw_block_write(struct ieee80211_hw * hw,const u8 * buffer,u32 size)129989d32c90SLarry Finger void rtl_fw_block_write(struct ieee80211_hw *hw, const u8 *buffer, u32 size)
130089d32c90SLarry Finger {
130189d32c90SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
130289d32c90SLarry Finger u8 *pu4byteptr = (u8 *)buffer;
130389d32c90SLarry Finger u32 i;
130489d32c90SLarry Finger
130589d32c90SLarry Finger for (i = 0; i < size; i++)
130689d32c90SLarry Finger rtl_write_byte(rtlpriv, (START_ADDRESS + i), *(pu4byteptr + i));
130789d32c90SLarry Finger }
130889d32c90SLarry Finger EXPORT_SYMBOL_GPL(rtl_fw_block_write);
130989d32c90SLarry Finger
rtl_fw_page_write(struct ieee80211_hw * hw,u32 page,const u8 * buffer,u32 size)131089d32c90SLarry Finger void rtl_fw_page_write(struct ieee80211_hw *hw, u32 page, const u8 *buffer,
131189d32c90SLarry Finger u32 size)
131289d32c90SLarry Finger {
131389d32c90SLarry Finger struct rtl_priv *rtlpriv = rtl_priv(hw);
131489d32c90SLarry Finger u8 value8;
131589d32c90SLarry Finger u8 u8page = (u8)(page & 0x07);
131689d32c90SLarry Finger
131789d32c90SLarry Finger value8 = (rtl_read_byte(rtlpriv, REG_MCUFWDL + 2) & 0xF8) | u8page;
131889d32c90SLarry Finger
131989d32c90SLarry Finger rtl_write_byte(rtlpriv, (REG_MCUFWDL + 2), value8);
132089d32c90SLarry Finger rtl_fw_block_write(hw, buffer, size);
132189d32c90SLarry Finger }
132289d32c90SLarry Finger EXPORT_SYMBOL_GPL(rtl_fw_page_write);
132389d32c90SLarry Finger
rtl_fill_dummy(u8 * pfwbuf,u32 * pfwlen)132489d32c90SLarry Finger void rtl_fill_dummy(u8 *pfwbuf, u32 *pfwlen)
132589d32c90SLarry Finger {
132689d32c90SLarry Finger u32 fwlen = *pfwlen;
132789d32c90SLarry Finger u8 remain = (u8)(fwlen % 4);
132889d32c90SLarry Finger
132989d32c90SLarry Finger remain = (remain == 0) ? 0 : (4 - remain);
133089d32c90SLarry Finger
133189d32c90SLarry Finger while (remain > 0) {
133289d32c90SLarry Finger pfwbuf[fwlen] = 0;
133389d32c90SLarry Finger fwlen++;
133489d32c90SLarry Finger remain--;
133589d32c90SLarry Finger }
133689d32c90SLarry Finger
133789d32c90SLarry Finger *pfwlen = fwlen;
133889d32c90SLarry Finger }
133989d32c90SLarry Finger EXPORT_SYMBOL_GPL(rtl_fill_dummy);
13402cdd634eSPing-Ke Shih
rtl_efuse_ops_init(struct ieee80211_hw * hw)13412cdd634eSPing-Ke Shih void rtl_efuse_ops_init(struct ieee80211_hw *hw)
13422cdd634eSPing-Ke Shih {
13432cdd634eSPing-Ke Shih struct rtl_priv *rtlpriv = rtl_priv(hw);
13442cdd634eSPing-Ke Shih
13452cdd634eSPing-Ke Shih rtlpriv->efuse.efuse_ops = &efuse_ops;
13462cdd634eSPing-Ke Shih }
13472cdd634eSPing-Ke Shih EXPORT_SYMBOL_GPL(rtl_efuse_ops_init);
1348