18c2ecf20Sopenharmony_ci// SPDX-License-Identifier: GPL-2.0-only 28c2ecf20Sopenharmony_ci/* 38c2ecf20Sopenharmony_ci * tda18271c2dd: Driver for the TDA18271C2 tuner 48c2ecf20Sopenharmony_ci * 58c2ecf20Sopenharmony_ci * Copyright (C) 2010 Digital Devices GmbH 68c2ecf20Sopenharmony_ci */ 78c2ecf20Sopenharmony_ci 88c2ecf20Sopenharmony_ci#include <linux/kernel.h> 98c2ecf20Sopenharmony_ci#include <linux/module.h> 108c2ecf20Sopenharmony_ci#include <linux/init.h> 118c2ecf20Sopenharmony_ci#include <linux/delay.h> 128c2ecf20Sopenharmony_ci#include <linux/firmware.h> 138c2ecf20Sopenharmony_ci#include <linux/i2c.h> 148c2ecf20Sopenharmony_ci#include <asm/div64.h> 158c2ecf20Sopenharmony_ci 168c2ecf20Sopenharmony_ci#include <media/dvb_frontend.h> 178c2ecf20Sopenharmony_ci#include "tda18271c2dd.h" 188c2ecf20Sopenharmony_ci 198c2ecf20Sopenharmony_ci/* Max transfer size done by I2C transfer functions */ 208c2ecf20Sopenharmony_ci#define MAX_XFER_SIZE 64 218c2ecf20Sopenharmony_ci 228c2ecf20Sopenharmony_cistruct SStandardParam { 238c2ecf20Sopenharmony_ci s32 m_IFFrequency; 248c2ecf20Sopenharmony_ci u32 m_BandWidth; 258c2ecf20Sopenharmony_ci u8 m_EP3_4_0; 268c2ecf20Sopenharmony_ci u8 m_EB22; 278c2ecf20Sopenharmony_ci}; 288c2ecf20Sopenharmony_ci 298c2ecf20Sopenharmony_cistruct SMap { 308c2ecf20Sopenharmony_ci u32 m_Frequency; 318c2ecf20Sopenharmony_ci u8 m_Param; 328c2ecf20Sopenharmony_ci}; 338c2ecf20Sopenharmony_ci 348c2ecf20Sopenharmony_cistruct SMapI { 358c2ecf20Sopenharmony_ci u32 m_Frequency; 368c2ecf20Sopenharmony_ci s32 m_Param; 378c2ecf20Sopenharmony_ci}; 388c2ecf20Sopenharmony_ci 398c2ecf20Sopenharmony_cistruct SMap2 { 408c2ecf20Sopenharmony_ci u32 m_Frequency; 418c2ecf20Sopenharmony_ci u8 m_Param1; 428c2ecf20Sopenharmony_ci u8 m_Param2; 438c2ecf20Sopenharmony_ci}; 448c2ecf20Sopenharmony_ci 458c2ecf20Sopenharmony_cistruct SRFBandMap { 468c2ecf20Sopenharmony_ci u32 m_RF_max; 478c2ecf20Sopenharmony_ci u32 m_RF1_Default; 488c2ecf20Sopenharmony_ci u32 m_RF2_Default; 498c2ecf20Sopenharmony_ci u32 m_RF3_Default; 508c2ecf20Sopenharmony_ci}; 518c2ecf20Sopenharmony_ci 528c2ecf20Sopenharmony_cienum ERegister { 538c2ecf20Sopenharmony_ci ID = 0, 548c2ecf20Sopenharmony_ci TM, 558c2ecf20Sopenharmony_ci PL, 568c2ecf20Sopenharmony_ci EP1, EP2, EP3, EP4, EP5, 578c2ecf20Sopenharmony_ci CPD, CD1, CD2, CD3, 588c2ecf20Sopenharmony_ci MPD, MD1, MD2, MD3, 598c2ecf20Sopenharmony_ci EB1, EB2, EB3, EB4, EB5, EB6, EB7, EB8, EB9, EB10, 608c2ecf20Sopenharmony_ci EB11, EB12, EB13, EB14, EB15, EB16, EB17, EB18, EB19, EB20, 618c2ecf20Sopenharmony_ci EB21, EB22, EB23, 628c2ecf20Sopenharmony_ci NUM_REGS 638c2ecf20Sopenharmony_ci}; 648c2ecf20Sopenharmony_ci 658c2ecf20Sopenharmony_cistruct tda_state { 668c2ecf20Sopenharmony_ci struct i2c_adapter *i2c; 678c2ecf20Sopenharmony_ci u8 adr; 688c2ecf20Sopenharmony_ci 698c2ecf20Sopenharmony_ci u32 m_Frequency; 708c2ecf20Sopenharmony_ci u32 IF; 718c2ecf20Sopenharmony_ci 728c2ecf20Sopenharmony_ci u8 m_IFLevelAnalog; 738c2ecf20Sopenharmony_ci u8 m_IFLevelDigital; 748c2ecf20Sopenharmony_ci u8 m_IFLevelDVBC; 758c2ecf20Sopenharmony_ci u8 m_IFLevelDVBT; 768c2ecf20Sopenharmony_ci 778c2ecf20Sopenharmony_ci u8 m_EP4; 788c2ecf20Sopenharmony_ci u8 m_EP3_Standby; 798c2ecf20Sopenharmony_ci 808c2ecf20Sopenharmony_ci bool m_bMaster; 818c2ecf20Sopenharmony_ci 828c2ecf20Sopenharmony_ci s32 m_SettlingTime; 838c2ecf20Sopenharmony_ci 848c2ecf20Sopenharmony_ci u8 m_Regs[NUM_REGS]; 858c2ecf20Sopenharmony_ci 868c2ecf20Sopenharmony_ci /* Tracking filter settings for band 0..6 */ 878c2ecf20Sopenharmony_ci u32 m_RF1[7]; 888c2ecf20Sopenharmony_ci s32 m_RF_A1[7]; 898c2ecf20Sopenharmony_ci s32 m_RF_B1[7]; 908c2ecf20Sopenharmony_ci u32 m_RF2[7]; 918c2ecf20Sopenharmony_ci s32 m_RF_A2[7]; 928c2ecf20Sopenharmony_ci s32 m_RF_B2[7]; 938c2ecf20Sopenharmony_ci u32 m_RF3[7]; 948c2ecf20Sopenharmony_ci 958c2ecf20Sopenharmony_ci u8 m_TMValue_RFCal; /* Calibration temperature */ 968c2ecf20Sopenharmony_ci 978c2ecf20Sopenharmony_ci bool m_bFMInput; /* true to use Pin 8 for FM Radio */ 988c2ecf20Sopenharmony_ci 998c2ecf20Sopenharmony_ci}; 1008c2ecf20Sopenharmony_ci 1018c2ecf20Sopenharmony_cistatic int PowerScan(struct tda_state *state, 1028c2ecf20Sopenharmony_ci u8 RFBand, u32 RF_in, 1038c2ecf20Sopenharmony_ci u32 *pRF_Out, bool *pbcal); 1048c2ecf20Sopenharmony_ci 1058c2ecf20Sopenharmony_cistatic int i2c_readn(struct i2c_adapter *adapter, u8 adr, u8 *data, int len) 1068c2ecf20Sopenharmony_ci{ 1078c2ecf20Sopenharmony_ci struct i2c_msg msgs[1] = {{.addr = adr, .flags = I2C_M_RD, 1088c2ecf20Sopenharmony_ci .buf = data, .len = len} }; 1098c2ecf20Sopenharmony_ci return (i2c_transfer(adapter, msgs, 1) == 1) ? 0 : -1; 1108c2ecf20Sopenharmony_ci} 1118c2ecf20Sopenharmony_ci 1128c2ecf20Sopenharmony_cistatic int i2c_write(struct i2c_adapter *adap, u8 adr, u8 *data, int len) 1138c2ecf20Sopenharmony_ci{ 1148c2ecf20Sopenharmony_ci struct i2c_msg msg = {.addr = adr, .flags = 0, 1158c2ecf20Sopenharmony_ci .buf = data, .len = len}; 1168c2ecf20Sopenharmony_ci 1178c2ecf20Sopenharmony_ci if (i2c_transfer(adap, &msg, 1) != 1) { 1188c2ecf20Sopenharmony_ci printk(KERN_ERR "tda18271c2dd: i2c write error at addr %i\n", adr); 1198c2ecf20Sopenharmony_ci return -1; 1208c2ecf20Sopenharmony_ci } 1218c2ecf20Sopenharmony_ci return 0; 1228c2ecf20Sopenharmony_ci} 1238c2ecf20Sopenharmony_ci 1248c2ecf20Sopenharmony_cistatic int WriteRegs(struct tda_state *state, 1258c2ecf20Sopenharmony_ci u8 SubAddr, u8 *Regs, u16 nRegs) 1268c2ecf20Sopenharmony_ci{ 1278c2ecf20Sopenharmony_ci u8 data[MAX_XFER_SIZE]; 1288c2ecf20Sopenharmony_ci 1298c2ecf20Sopenharmony_ci if (1 + nRegs > sizeof(data)) { 1308c2ecf20Sopenharmony_ci printk(KERN_WARNING 1318c2ecf20Sopenharmony_ci "%s: i2c wr: len=%d is too big!\n", 1328c2ecf20Sopenharmony_ci KBUILD_MODNAME, nRegs); 1338c2ecf20Sopenharmony_ci return -EINVAL; 1348c2ecf20Sopenharmony_ci } 1358c2ecf20Sopenharmony_ci 1368c2ecf20Sopenharmony_ci data[0] = SubAddr; 1378c2ecf20Sopenharmony_ci memcpy(data + 1, Regs, nRegs); 1388c2ecf20Sopenharmony_ci return i2c_write(state->i2c, state->adr, data, nRegs + 1); 1398c2ecf20Sopenharmony_ci} 1408c2ecf20Sopenharmony_ci 1418c2ecf20Sopenharmony_cistatic int WriteReg(struct tda_state *state, u8 SubAddr, u8 Reg) 1428c2ecf20Sopenharmony_ci{ 1438c2ecf20Sopenharmony_ci u8 msg[2] = {SubAddr, Reg}; 1448c2ecf20Sopenharmony_ci 1458c2ecf20Sopenharmony_ci return i2c_write(state->i2c, state->adr, msg, 2); 1468c2ecf20Sopenharmony_ci} 1478c2ecf20Sopenharmony_ci 1488c2ecf20Sopenharmony_cistatic int Read(struct tda_state *state, u8 * Regs) 1498c2ecf20Sopenharmony_ci{ 1508c2ecf20Sopenharmony_ci return i2c_readn(state->i2c, state->adr, Regs, 16); 1518c2ecf20Sopenharmony_ci} 1528c2ecf20Sopenharmony_ci 1538c2ecf20Sopenharmony_cistatic int ReadExtented(struct tda_state *state, u8 * Regs) 1548c2ecf20Sopenharmony_ci{ 1558c2ecf20Sopenharmony_ci return i2c_readn(state->i2c, state->adr, Regs, NUM_REGS); 1568c2ecf20Sopenharmony_ci} 1578c2ecf20Sopenharmony_ci 1588c2ecf20Sopenharmony_cistatic int UpdateRegs(struct tda_state *state, u8 RegFrom, u8 RegTo) 1598c2ecf20Sopenharmony_ci{ 1608c2ecf20Sopenharmony_ci return WriteRegs(state, RegFrom, 1618c2ecf20Sopenharmony_ci &state->m_Regs[RegFrom], RegTo-RegFrom+1); 1628c2ecf20Sopenharmony_ci} 1638c2ecf20Sopenharmony_cistatic int UpdateReg(struct tda_state *state, u8 Reg) 1648c2ecf20Sopenharmony_ci{ 1658c2ecf20Sopenharmony_ci return WriteReg(state, Reg, state->m_Regs[Reg]); 1668c2ecf20Sopenharmony_ci} 1678c2ecf20Sopenharmony_ci 1688c2ecf20Sopenharmony_ci#include "tda18271c2dd_maps.h" 1698c2ecf20Sopenharmony_ci 1708c2ecf20Sopenharmony_cistatic void reset(struct tda_state *state) 1718c2ecf20Sopenharmony_ci{ 1728c2ecf20Sopenharmony_ci u32 ulIFLevelAnalog = 0; 1738c2ecf20Sopenharmony_ci u32 ulIFLevelDigital = 2; 1748c2ecf20Sopenharmony_ci u32 ulIFLevelDVBC = 7; 1758c2ecf20Sopenharmony_ci u32 ulIFLevelDVBT = 6; 1768c2ecf20Sopenharmony_ci u32 ulXTOut = 0; 1778c2ecf20Sopenharmony_ci u32 ulStandbyMode = 0x06; /* Send in stdb, but leave osc on */ 1788c2ecf20Sopenharmony_ci u32 ulSlave = 0; 1798c2ecf20Sopenharmony_ci u32 ulFMInput = 0; 1808c2ecf20Sopenharmony_ci u32 ulSettlingTime = 100; 1818c2ecf20Sopenharmony_ci 1828c2ecf20Sopenharmony_ci state->m_Frequency = 0; 1838c2ecf20Sopenharmony_ci state->m_SettlingTime = 100; 1848c2ecf20Sopenharmony_ci state->m_IFLevelAnalog = (ulIFLevelAnalog & 0x07) << 2; 1858c2ecf20Sopenharmony_ci state->m_IFLevelDigital = (ulIFLevelDigital & 0x07) << 2; 1868c2ecf20Sopenharmony_ci state->m_IFLevelDVBC = (ulIFLevelDVBC & 0x07) << 2; 1878c2ecf20Sopenharmony_ci state->m_IFLevelDVBT = (ulIFLevelDVBT & 0x07) << 2; 1888c2ecf20Sopenharmony_ci 1898c2ecf20Sopenharmony_ci state->m_EP4 = 0x20; 1908c2ecf20Sopenharmony_ci if (ulXTOut != 0) 1918c2ecf20Sopenharmony_ci state->m_EP4 |= 0x40; 1928c2ecf20Sopenharmony_ci 1938c2ecf20Sopenharmony_ci state->m_EP3_Standby = ((ulStandbyMode & 0x07) << 5) | 0x0F; 1948c2ecf20Sopenharmony_ci state->m_bMaster = (ulSlave == 0); 1958c2ecf20Sopenharmony_ci 1968c2ecf20Sopenharmony_ci state->m_SettlingTime = ulSettlingTime; 1978c2ecf20Sopenharmony_ci 1988c2ecf20Sopenharmony_ci state->m_bFMInput = (ulFMInput == 2); 1998c2ecf20Sopenharmony_ci} 2008c2ecf20Sopenharmony_ci 2018c2ecf20Sopenharmony_cistatic bool SearchMap1(const struct SMap map[], u32 frequency, u8 *param) 2028c2ecf20Sopenharmony_ci{ 2038c2ecf20Sopenharmony_ci int i = 0; 2048c2ecf20Sopenharmony_ci 2058c2ecf20Sopenharmony_ci while ((map[i].m_Frequency != 0) && (frequency > map[i].m_Frequency)) 2068c2ecf20Sopenharmony_ci i += 1; 2078c2ecf20Sopenharmony_ci if (map[i].m_Frequency == 0) 2088c2ecf20Sopenharmony_ci return false; 2098c2ecf20Sopenharmony_ci *param = map[i].m_Param; 2108c2ecf20Sopenharmony_ci return true; 2118c2ecf20Sopenharmony_ci} 2128c2ecf20Sopenharmony_ci 2138c2ecf20Sopenharmony_cistatic bool SearchMap2(const struct SMapI map[], u32 frequency, s32 *param) 2148c2ecf20Sopenharmony_ci{ 2158c2ecf20Sopenharmony_ci int i = 0; 2168c2ecf20Sopenharmony_ci 2178c2ecf20Sopenharmony_ci while ((map[i].m_Frequency != 0) && 2188c2ecf20Sopenharmony_ci (frequency > map[i].m_Frequency)) 2198c2ecf20Sopenharmony_ci i += 1; 2208c2ecf20Sopenharmony_ci if (map[i].m_Frequency == 0) 2218c2ecf20Sopenharmony_ci return false; 2228c2ecf20Sopenharmony_ci *param = map[i].m_Param; 2238c2ecf20Sopenharmony_ci return true; 2248c2ecf20Sopenharmony_ci} 2258c2ecf20Sopenharmony_ci 2268c2ecf20Sopenharmony_cistatic bool SearchMap3(const struct SMap2 map[], u32 frequency, u8 *param1, 2278c2ecf20Sopenharmony_ci u8 *param2) 2288c2ecf20Sopenharmony_ci{ 2298c2ecf20Sopenharmony_ci int i = 0; 2308c2ecf20Sopenharmony_ci 2318c2ecf20Sopenharmony_ci while ((map[i].m_Frequency != 0) && 2328c2ecf20Sopenharmony_ci (frequency > map[i].m_Frequency)) 2338c2ecf20Sopenharmony_ci i += 1; 2348c2ecf20Sopenharmony_ci if (map[i].m_Frequency == 0) 2358c2ecf20Sopenharmony_ci return false; 2368c2ecf20Sopenharmony_ci *param1 = map[i].m_Param1; 2378c2ecf20Sopenharmony_ci *param2 = map[i].m_Param2; 2388c2ecf20Sopenharmony_ci return true; 2398c2ecf20Sopenharmony_ci} 2408c2ecf20Sopenharmony_ci 2418c2ecf20Sopenharmony_cistatic bool SearchMap4(const struct SRFBandMap map[], u32 frequency, u8 *rfband) 2428c2ecf20Sopenharmony_ci{ 2438c2ecf20Sopenharmony_ci int i = 0; 2448c2ecf20Sopenharmony_ci 2458c2ecf20Sopenharmony_ci while (i < 7 && (frequency > map[i].m_RF_max)) 2468c2ecf20Sopenharmony_ci i += 1; 2478c2ecf20Sopenharmony_ci if (i == 7) 2488c2ecf20Sopenharmony_ci return false; 2498c2ecf20Sopenharmony_ci *rfband = i; 2508c2ecf20Sopenharmony_ci return true; 2518c2ecf20Sopenharmony_ci} 2528c2ecf20Sopenharmony_ci 2538c2ecf20Sopenharmony_cistatic int ThermometerRead(struct tda_state *state, u8 *pTM_Value) 2548c2ecf20Sopenharmony_ci{ 2558c2ecf20Sopenharmony_ci int status = 0; 2568c2ecf20Sopenharmony_ci 2578c2ecf20Sopenharmony_ci do { 2588c2ecf20Sopenharmony_ci u8 Regs[16]; 2598c2ecf20Sopenharmony_ci state->m_Regs[TM] |= 0x10; 2608c2ecf20Sopenharmony_ci status = UpdateReg(state, TM); 2618c2ecf20Sopenharmony_ci if (status < 0) 2628c2ecf20Sopenharmony_ci break; 2638c2ecf20Sopenharmony_ci status = Read(state, Regs); 2648c2ecf20Sopenharmony_ci if (status < 0) 2658c2ecf20Sopenharmony_ci break; 2668c2ecf20Sopenharmony_ci if (((Regs[TM] & 0x0F) == 0 && (Regs[TM] & 0x20) == 0x20) || 2678c2ecf20Sopenharmony_ci ((Regs[TM] & 0x0F) == 8 && (Regs[TM] & 0x20) == 0x00)) { 2688c2ecf20Sopenharmony_ci state->m_Regs[TM] ^= 0x20; 2698c2ecf20Sopenharmony_ci status = UpdateReg(state, TM); 2708c2ecf20Sopenharmony_ci if (status < 0) 2718c2ecf20Sopenharmony_ci break; 2728c2ecf20Sopenharmony_ci msleep(10); 2738c2ecf20Sopenharmony_ci status = Read(state, Regs); 2748c2ecf20Sopenharmony_ci if (status < 0) 2758c2ecf20Sopenharmony_ci break; 2768c2ecf20Sopenharmony_ci } 2778c2ecf20Sopenharmony_ci *pTM_Value = (Regs[TM] & 0x20) 2788c2ecf20Sopenharmony_ci ? m_Thermometer_Map_2[Regs[TM] & 0x0F] 2798c2ecf20Sopenharmony_ci : m_Thermometer_Map_1[Regs[TM] & 0x0F] ; 2808c2ecf20Sopenharmony_ci state->m_Regs[TM] &= ~0x10; /* Thermometer off */ 2818c2ecf20Sopenharmony_ci status = UpdateReg(state, TM); 2828c2ecf20Sopenharmony_ci if (status < 0) 2838c2ecf20Sopenharmony_ci break; 2848c2ecf20Sopenharmony_ci state->m_Regs[EP4] &= ~0x03; /* CAL_mode = 0 ????????? */ 2858c2ecf20Sopenharmony_ci status = UpdateReg(state, EP4); 2868c2ecf20Sopenharmony_ci if (status < 0) 2878c2ecf20Sopenharmony_ci break; 2888c2ecf20Sopenharmony_ci } while (0); 2898c2ecf20Sopenharmony_ci 2908c2ecf20Sopenharmony_ci return status; 2918c2ecf20Sopenharmony_ci} 2928c2ecf20Sopenharmony_ci 2938c2ecf20Sopenharmony_cistatic int StandBy(struct tda_state *state) 2948c2ecf20Sopenharmony_ci{ 2958c2ecf20Sopenharmony_ci int status = 0; 2968c2ecf20Sopenharmony_ci do { 2978c2ecf20Sopenharmony_ci state->m_Regs[EB12] &= ~0x20; /* PD_AGC1_Det = 0 */ 2988c2ecf20Sopenharmony_ci status = UpdateReg(state, EB12); 2998c2ecf20Sopenharmony_ci if (status < 0) 3008c2ecf20Sopenharmony_ci break; 3018c2ecf20Sopenharmony_ci state->m_Regs[EB18] &= ~0x83; /* AGC1_loop_off = 0, AGC1_Gain = 6 dB */ 3028c2ecf20Sopenharmony_ci status = UpdateReg(state, EB18); 3038c2ecf20Sopenharmony_ci if (status < 0) 3048c2ecf20Sopenharmony_ci break; 3058c2ecf20Sopenharmony_ci state->m_Regs[EB21] |= 0x03; /* AGC2_Gain = -6 dB */ 3068c2ecf20Sopenharmony_ci state->m_Regs[EP3] = state->m_EP3_Standby; 3078c2ecf20Sopenharmony_ci status = UpdateReg(state, EP3); 3088c2ecf20Sopenharmony_ci if (status < 0) 3098c2ecf20Sopenharmony_ci break; 3108c2ecf20Sopenharmony_ci state->m_Regs[EB23] &= ~0x06; /* ForceLP_Fc2_En = 0, LP_Fc[2] = 0 */ 3118c2ecf20Sopenharmony_ci status = UpdateRegs(state, EB21, EB23); 3128c2ecf20Sopenharmony_ci if (status < 0) 3138c2ecf20Sopenharmony_ci break; 3148c2ecf20Sopenharmony_ci } while (0); 3158c2ecf20Sopenharmony_ci return status; 3168c2ecf20Sopenharmony_ci} 3178c2ecf20Sopenharmony_ci 3188c2ecf20Sopenharmony_cistatic int CalcMainPLL(struct tda_state *state, u32 freq) 3198c2ecf20Sopenharmony_ci{ 3208c2ecf20Sopenharmony_ci 3218c2ecf20Sopenharmony_ci u8 PostDiv; 3228c2ecf20Sopenharmony_ci u8 Div; 3238c2ecf20Sopenharmony_ci u64 OscFreq; 3248c2ecf20Sopenharmony_ci u32 MainDiv; 3258c2ecf20Sopenharmony_ci 3268c2ecf20Sopenharmony_ci if (!SearchMap3(m_Main_PLL_Map, freq, &PostDiv, &Div)) 3278c2ecf20Sopenharmony_ci return -EINVAL; 3288c2ecf20Sopenharmony_ci 3298c2ecf20Sopenharmony_ci OscFreq = (u64) freq * (u64) Div; 3308c2ecf20Sopenharmony_ci OscFreq *= (u64) 16384; 3318c2ecf20Sopenharmony_ci do_div(OscFreq, (u64)16000000); 3328c2ecf20Sopenharmony_ci MainDiv = OscFreq; 3338c2ecf20Sopenharmony_ci 3348c2ecf20Sopenharmony_ci state->m_Regs[MPD] = PostDiv & 0x77; 3358c2ecf20Sopenharmony_ci state->m_Regs[MD1] = ((MainDiv >> 16) & 0x7F); 3368c2ecf20Sopenharmony_ci state->m_Regs[MD2] = ((MainDiv >> 8) & 0xFF); 3378c2ecf20Sopenharmony_ci state->m_Regs[MD3] = (MainDiv & 0xFF); 3388c2ecf20Sopenharmony_ci 3398c2ecf20Sopenharmony_ci return UpdateRegs(state, MPD, MD3); 3408c2ecf20Sopenharmony_ci} 3418c2ecf20Sopenharmony_ci 3428c2ecf20Sopenharmony_cistatic int CalcCalPLL(struct tda_state *state, u32 freq) 3438c2ecf20Sopenharmony_ci{ 3448c2ecf20Sopenharmony_ci u8 PostDiv; 3458c2ecf20Sopenharmony_ci u8 Div; 3468c2ecf20Sopenharmony_ci u64 OscFreq; 3478c2ecf20Sopenharmony_ci u32 CalDiv; 3488c2ecf20Sopenharmony_ci 3498c2ecf20Sopenharmony_ci if (!SearchMap3(m_Cal_PLL_Map, freq, &PostDiv, &Div)) 3508c2ecf20Sopenharmony_ci return -EINVAL; 3518c2ecf20Sopenharmony_ci 3528c2ecf20Sopenharmony_ci OscFreq = (u64)freq * (u64)Div; 3538c2ecf20Sopenharmony_ci /* CalDiv = u32( OscFreq * 16384 / 16000000 ); */ 3548c2ecf20Sopenharmony_ci OscFreq *= (u64)16384; 3558c2ecf20Sopenharmony_ci do_div(OscFreq, (u64)16000000); 3568c2ecf20Sopenharmony_ci CalDiv = OscFreq; 3578c2ecf20Sopenharmony_ci 3588c2ecf20Sopenharmony_ci state->m_Regs[CPD] = PostDiv; 3598c2ecf20Sopenharmony_ci state->m_Regs[CD1] = ((CalDiv >> 16) & 0xFF); 3608c2ecf20Sopenharmony_ci state->m_Regs[CD2] = ((CalDiv >> 8) & 0xFF); 3618c2ecf20Sopenharmony_ci state->m_Regs[CD3] = (CalDiv & 0xFF); 3628c2ecf20Sopenharmony_ci 3638c2ecf20Sopenharmony_ci return UpdateRegs(state, CPD, CD3); 3648c2ecf20Sopenharmony_ci} 3658c2ecf20Sopenharmony_ci 3668c2ecf20Sopenharmony_cistatic int CalibrateRF(struct tda_state *state, 3678c2ecf20Sopenharmony_ci u8 RFBand, u32 freq, s32 *pCprog) 3688c2ecf20Sopenharmony_ci{ 3698c2ecf20Sopenharmony_ci int status = 0; 3708c2ecf20Sopenharmony_ci u8 Regs[NUM_REGS]; 3718c2ecf20Sopenharmony_ci do { 3728c2ecf20Sopenharmony_ci u8 BP_Filter = 0; 3738c2ecf20Sopenharmony_ci u8 GainTaper = 0; 3748c2ecf20Sopenharmony_ci u8 RFC_K = 0; 3758c2ecf20Sopenharmony_ci u8 RFC_M = 0; 3768c2ecf20Sopenharmony_ci 3778c2ecf20Sopenharmony_ci state->m_Regs[EP4] &= ~0x03; /* CAL_mode = 0 */ 3788c2ecf20Sopenharmony_ci status = UpdateReg(state, EP4); 3798c2ecf20Sopenharmony_ci if (status < 0) 3808c2ecf20Sopenharmony_ci break; 3818c2ecf20Sopenharmony_ci state->m_Regs[EB18] |= 0x03; /* AGC1_Gain = 3 */ 3828c2ecf20Sopenharmony_ci status = UpdateReg(state, EB18); 3838c2ecf20Sopenharmony_ci if (status < 0) 3848c2ecf20Sopenharmony_ci break; 3858c2ecf20Sopenharmony_ci 3868c2ecf20Sopenharmony_ci /* Switching off LT (as datasheet says) causes calibration on C1 to fail */ 3878c2ecf20Sopenharmony_ci /* (Readout of Cprog is always 255) */ 3888c2ecf20Sopenharmony_ci if (state->m_Regs[ID] != 0x83) /* C1: ID == 83, C2: ID == 84 */ 3898c2ecf20Sopenharmony_ci state->m_Regs[EP3] |= 0x40; /* SM_LT = 1 */ 3908c2ecf20Sopenharmony_ci 3918c2ecf20Sopenharmony_ci if (!(SearchMap1(m_BP_Filter_Map, freq, &BP_Filter) && 3928c2ecf20Sopenharmony_ci SearchMap1(m_GainTaper_Map, freq, &GainTaper) && 3938c2ecf20Sopenharmony_ci SearchMap3(m_KM_Map, freq, &RFC_K, &RFC_M))) 3948c2ecf20Sopenharmony_ci return -EINVAL; 3958c2ecf20Sopenharmony_ci 3968c2ecf20Sopenharmony_ci state->m_Regs[EP1] = (state->m_Regs[EP1] & ~0x07) | BP_Filter; 3978c2ecf20Sopenharmony_ci state->m_Regs[EP2] = (RFBand << 5) | GainTaper; 3988c2ecf20Sopenharmony_ci 3998c2ecf20Sopenharmony_ci state->m_Regs[EB13] = (state->m_Regs[EB13] & ~0x7C) | (RFC_K << 4) | (RFC_M << 2); 4008c2ecf20Sopenharmony_ci 4018c2ecf20Sopenharmony_ci status = UpdateRegs(state, EP1, EP3); 4028c2ecf20Sopenharmony_ci if (status < 0) 4038c2ecf20Sopenharmony_ci break; 4048c2ecf20Sopenharmony_ci status = UpdateReg(state, EB13); 4058c2ecf20Sopenharmony_ci if (status < 0) 4068c2ecf20Sopenharmony_ci break; 4078c2ecf20Sopenharmony_ci 4088c2ecf20Sopenharmony_ci state->m_Regs[EB4] |= 0x20; /* LO_ForceSrce = 1 */ 4098c2ecf20Sopenharmony_ci status = UpdateReg(state, EB4); 4108c2ecf20Sopenharmony_ci if (status < 0) 4118c2ecf20Sopenharmony_ci break; 4128c2ecf20Sopenharmony_ci 4138c2ecf20Sopenharmony_ci state->m_Regs[EB7] |= 0x20; /* CAL_ForceSrce = 1 */ 4148c2ecf20Sopenharmony_ci status = UpdateReg(state, EB7); 4158c2ecf20Sopenharmony_ci if (status < 0) 4168c2ecf20Sopenharmony_ci break; 4178c2ecf20Sopenharmony_ci 4188c2ecf20Sopenharmony_ci state->m_Regs[EB14] = 0; /* RFC_Cprog = 0 */ 4198c2ecf20Sopenharmony_ci status = UpdateReg(state, EB14); 4208c2ecf20Sopenharmony_ci if (status < 0) 4218c2ecf20Sopenharmony_ci break; 4228c2ecf20Sopenharmony_ci 4238c2ecf20Sopenharmony_ci state->m_Regs[EB20] &= ~0x20; /* ForceLock = 0; */ 4248c2ecf20Sopenharmony_ci status = UpdateReg(state, EB20); 4258c2ecf20Sopenharmony_ci if (status < 0) 4268c2ecf20Sopenharmony_ci break; 4278c2ecf20Sopenharmony_ci 4288c2ecf20Sopenharmony_ci state->m_Regs[EP4] |= 0x03; /* CAL_Mode = 3 */ 4298c2ecf20Sopenharmony_ci status = UpdateRegs(state, EP4, EP5); 4308c2ecf20Sopenharmony_ci if (status < 0) 4318c2ecf20Sopenharmony_ci break; 4328c2ecf20Sopenharmony_ci 4338c2ecf20Sopenharmony_ci status = CalcCalPLL(state, freq); 4348c2ecf20Sopenharmony_ci if (status < 0) 4358c2ecf20Sopenharmony_ci break; 4368c2ecf20Sopenharmony_ci status = CalcMainPLL(state, freq + 1000000); 4378c2ecf20Sopenharmony_ci if (status < 0) 4388c2ecf20Sopenharmony_ci break; 4398c2ecf20Sopenharmony_ci 4408c2ecf20Sopenharmony_ci msleep(5); 4418c2ecf20Sopenharmony_ci status = UpdateReg(state, EP2); 4428c2ecf20Sopenharmony_ci if (status < 0) 4438c2ecf20Sopenharmony_ci break; 4448c2ecf20Sopenharmony_ci status = UpdateReg(state, EP1); 4458c2ecf20Sopenharmony_ci if (status < 0) 4468c2ecf20Sopenharmony_ci break; 4478c2ecf20Sopenharmony_ci status = UpdateReg(state, EP2); 4488c2ecf20Sopenharmony_ci if (status < 0) 4498c2ecf20Sopenharmony_ci break; 4508c2ecf20Sopenharmony_ci status = UpdateReg(state, EP1); 4518c2ecf20Sopenharmony_ci if (status < 0) 4528c2ecf20Sopenharmony_ci break; 4538c2ecf20Sopenharmony_ci 4548c2ecf20Sopenharmony_ci state->m_Regs[EB4] &= ~0x20; /* LO_ForceSrce = 0 */ 4558c2ecf20Sopenharmony_ci status = UpdateReg(state, EB4); 4568c2ecf20Sopenharmony_ci if (status < 0) 4578c2ecf20Sopenharmony_ci break; 4588c2ecf20Sopenharmony_ci 4598c2ecf20Sopenharmony_ci state->m_Regs[EB7] &= ~0x20; /* CAL_ForceSrce = 0 */ 4608c2ecf20Sopenharmony_ci status = UpdateReg(state, EB7); 4618c2ecf20Sopenharmony_ci if (status < 0) 4628c2ecf20Sopenharmony_ci break; 4638c2ecf20Sopenharmony_ci msleep(10); 4648c2ecf20Sopenharmony_ci 4658c2ecf20Sopenharmony_ci state->m_Regs[EB20] |= 0x20; /* ForceLock = 1; */ 4668c2ecf20Sopenharmony_ci status = UpdateReg(state, EB20); 4678c2ecf20Sopenharmony_ci if (status < 0) 4688c2ecf20Sopenharmony_ci break; 4698c2ecf20Sopenharmony_ci msleep(60); 4708c2ecf20Sopenharmony_ci 4718c2ecf20Sopenharmony_ci state->m_Regs[EP4] &= ~0x03; /* CAL_Mode = 0 */ 4728c2ecf20Sopenharmony_ci state->m_Regs[EP3] &= ~0x40; /* SM_LT = 0 */ 4738c2ecf20Sopenharmony_ci state->m_Regs[EB18] &= ~0x03; /* AGC1_Gain = 0 */ 4748c2ecf20Sopenharmony_ci status = UpdateReg(state, EB18); 4758c2ecf20Sopenharmony_ci if (status < 0) 4768c2ecf20Sopenharmony_ci break; 4778c2ecf20Sopenharmony_ci status = UpdateRegs(state, EP3, EP4); 4788c2ecf20Sopenharmony_ci if (status < 0) 4798c2ecf20Sopenharmony_ci break; 4808c2ecf20Sopenharmony_ci status = UpdateReg(state, EP1); 4818c2ecf20Sopenharmony_ci if (status < 0) 4828c2ecf20Sopenharmony_ci break; 4838c2ecf20Sopenharmony_ci 4848c2ecf20Sopenharmony_ci status = ReadExtented(state, Regs); 4858c2ecf20Sopenharmony_ci if (status < 0) 4868c2ecf20Sopenharmony_ci break; 4878c2ecf20Sopenharmony_ci 4888c2ecf20Sopenharmony_ci *pCprog = Regs[EB14]; 4898c2ecf20Sopenharmony_ci 4908c2ecf20Sopenharmony_ci } while (0); 4918c2ecf20Sopenharmony_ci return status; 4928c2ecf20Sopenharmony_ci} 4938c2ecf20Sopenharmony_ci 4948c2ecf20Sopenharmony_cistatic int RFTrackingFiltersInit(struct tda_state *state, 4958c2ecf20Sopenharmony_ci u8 RFBand) 4968c2ecf20Sopenharmony_ci{ 4978c2ecf20Sopenharmony_ci int status = 0; 4988c2ecf20Sopenharmony_ci 4998c2ecf20Sopenharmony_ci u32 RF1 = m_RF_Band_Map[RFBand].m_RF1_Default; 5008c2ecf20Sopenharmony_ci u32 RF2 = m_RF_Band_Map[RFBand].m_RF2_Default; 5018c2ecf20Sopenharmony_ci u32 RF3 = m_RF_Band_Map[RFBand].m_RF3_Default; 5028c2ecf20Sopenharmony_ci bool bcal = false; 5038c2ecf20Sopenharmony_ci 5048c2ecf20Sopenharmony_ci s32 Cprog_cal1 = 0; 5058c2ecf20Sopenharmony_ci s32 Cprog_table1 = 0; 5068c2ecf20Sopenharmony_ci s32 Cprog_cal2 = 0; 5078c2ecf20Sopenharmony_ci s32 Cprog_table2 = 0; 5088c2ecf20Sopenharmony_ci s32 Cprog_cal3 = 0; 5098c2ecf20Sopenharmony_ci s32 Cprog_table3 = 0; 5108c2ecf20Sopenharmony_ci 5118c2ecf20Sopenharmony_ci state->m_RF_A1[RFBand] = 0; 5128c2ecf20Sopenharmony_ci state->m_RF_B1[RFBand] = 0; 5138c2ecf20Sopenharmony_ci state->m_RF_A2[RFBand] = 0; 5148c2ecf20Sopenharmony_ci state->m_RF_B2[RFBand] = 0; 5158c2ecf20Sopenharmony_ci 5168c2ecf20Sopenharmony_ci do { 5178c2ecf20Sopenharmony_ci status = PowerScan(state, RFBand, RF1, &RF1, &bcal); 5188c2ecf20Sopenharmony_ci if (status < 0) 5198c2ecf20Sopenharmony_ci break; 5208c2ecf20Sopenharmony_ci if (bcal) { 5218c2ecf20Sopenharmony_ci status = CalibrateRF(state, RFBand, RF1, &Cprog_cal1); 5228c2ecf20Sopenharmony_ci if (status < 0) 5238c2ecf20Sopenharmony_ci break; 5248c2ecf20Sopenharmony_ci } 5258c2ecf20Sopenharmony_ci SearchMap2(m_RF_Cal_Map, RF1, &Cprog_table1); 5268c2ecf20Sopenharmony_ci if (!bcal) 5278c2ecf20Sopenharmony_ci Cprog_cal1 = Cprog_table1; 5288c2ecf20Sopenharmony_ci state->m_RF_B1[RFBand] = Cprog_cal1 - Cprog_table1; 5298c2ecf20Sopenharmony_ci /* state->m_RF_A1[RF_Band] = ???? */ 5308c2ecf20Sopenharmony_ci 5318c2ecf20Sopenharmony_ci if (RF2 == 0) 5328c2ecf20Sopenharmony_ci break; 5338c2ecf20Sopenharmony_ci 5348c2ecf20Sopenharmony_ci status = PowerScan(state, RFBand, RF2, &RF2, &bcal); 5358c2ecf20Sopenharmony_ci if (status < 0) 5368c2ecf20Sopenharmony_ci break; 5378c2ecf20Sopenharmony_ci if (bcal) { 5388c2ecf20Sopenharmony_ci status = CalibrateRF(state, RFBand, RF2, &Cprog_cal2); 5398c2ecf20Sopenharmony_ci if (status < 0) 5408c2ecf20Sopenharmony_ci break; 5418c2ecf20Sopenharmony_ci } 5428c2ecf20Sopenharmony_ci SearchMap2(m_RF_Cal_Map, RF2, &Cprog_table2); 5438c2ecf20Sopenharmony_ci if (!bcal) 5448c2ecf20Sopenharmony_ci Cprog_cal2 = Cprog_table2; 5458c2ecf20Sopenharmony_ci 5468c2ecf20Sopenharmony_ci state->m_RF_A1[RFBand] = 5478c2ecf20Sopenharmony_ci (Cprog_cal2 - Cprog_table2 - Cprog_cal1 + Cprog_table1) / 5488c2ecf20Sopenharmony_ci ((s32)(RF2) - (s32)(RF1)); 5498c2ecf20Sopenharmony_ci 5508c2ecf20Sopenharmony_ci if (RF3 == 0) 5518c2ecf20Sopenharmony_ci break; 5528c2ecf20Sopenharmony_ci 5538c2ecf20Sopenharmony_ci status = PowerScan(state, RFBand, RF3, &RF3, &bcal); 5548c2ecf20Sopenharmony_ci if (status < 0) 5558c2ecf20Sopenharmony_ci break; 5568c2ecf20Sopenharmony_ci if (bcal) { 5578c2ecf20Sopenharmony_ci status = CalibrateRF(state, RFBand, RF3, &Cprog_cal3); 5588c2ecf20Sopenharmony_ci if (status < 0) 5598c2ecf20Sopenharmony_ci break; 5608c2ecf20Sopenharmony_ci } 5618c2ecf20Sopenharmony_ci SearchMap2(m_RF_Cal_Map, RF3, &Cprog_table3); 5628c2ecf20Sopenharmony_ci if (!bcal) 5638c2ecf20Sopenharmony_ci Cprog_cal3 = Cprog_table3; 5648c2ecf20Sopenharmony_ci state->m_RF_A2[RFBand] = (Cprog_cal3 - Cprog_table3 - Cprog_cal2 + Cprog_table2) / ((s32)(RF3) - (s32)(RF2)); 5658c2ecf20Sopenharmony_ci state->m_RF_B2[RFBand] = Cprog_cal2 - Cprog_table2; 5668c2ecf20Sopenharmony_ci 5678c2ecf20Sopenharmony_ci } while (0); 5688c2ecf20Sopenharmony_ci 5698c2ecf20Sopenharmony_ci state->m_RF1[RFBand] = RF1; 5708c2ecf20Sopenharmony_ci state->m_RF2[RFBand] = RF2; 5718c2ecf20Sopenharmony_ci state->m_RF3[RFBand] = RF3; 5728c2ecf20Sopenharmony_ci 5738c2ecf20Sopenharmony_ci#if 0 5748c2ecf20Sopenharmony_ci printk(KERN_ERR "tda18271c2dd: %s %d RF1 = %d A1 = %d B1 = %d RF2 = %d A2 = %d B2 = %d RF3 = %d\n", __func__, 5758c2ecf20Sopenharmony_ci RFBand, RF1, state->m_RF_A1[RFBand], state->m_RF_B1[RFBand], RF2, 5768c2ecf20Sopenharmony_ci state->m_RF_A2[RFBand], state->m_RF_B2[RFBand], RF3); 5778c2ecf20Sopenharmony_ci#endif 5788c2ecf20Sopenharmony_ci 5798c2ecf20Sopenharmony_ci return status; 5808c2ecf20Sopenharmony_ci} 5818c2ecf20Sopenharmony_ci 5828c2ecf20Sopenharmony_cistatic int PowerScan(struct tda_state *state, 5838c2ecf20Sopenharmony_ci u8 RFBand, u32 RF_in, u32 *pRF_Out, bool *pbcal) 5848c2ecf20Sopenharmony_ci{ 5858c2ecf20Sopenharmony_ci int status = 0; 5868c2ecf20Sopenharmony_ci do { 5878c2ecf20Sopenharmony_ci u8 Gain_Taper = 0; 5888c2ecf20Sopenharmony_ci s32 RFC_Cprog = 0; 5898c2ecf20Sopenharmony_ci u8 CID_Target = 0; 5908c2ecf20Sopenharmony_ci u8 CountLimit = 0; 5918c2ecf20Sopenharmony_ci u32 freq_MainPLL; 5928c2ecf20Sopenharmony_ci u8 Regs[NUM_REGS]; 5938c2ecf20Sopenharmony_ci u8 CID_Gain; 5948c2ecf20Sopenharmony_ci s32 Count = 0; 5958c2ecf20Sopenharmony_ci int sign = 1; 5968c2ecf20Sopenharmony_ci bool wait = false; 5978c2ecf20Sopenharmony_ci 5988c2ecf20Sopenharmony_ci if (!(SearchMap2(m_RF_Cal_Map, RF_in, &RFC_Cprog) && 5998c2ecf20Sopenharmony_ci SearchMap1(m_GainTaper_Map, RF_in, &Gain_Taper) && 6008c2ecf20Sopenharmony_ci SearchMap3(m_CID_Target_Map, RF_in, &CID_Target, &CountLimit))) { 6018c2ecf20Sopenharmony_ci 6028c2ecf20Sopenharmony_ci printk(KERN_ERR "tda18271c2dd: %s Search map failed\n", __func__); 6038c2ecf20Sopenharmony_ci return -EINVAL; 6048c2ecf20Sopenharmony_ci } 6058c2ecf20Sopenharmony_ci 6068c2ecf20Sopenharmony_ci state->m_Regs[EP2] = (RFBand << 5) | Gain_Taper; 6078c2ecf20Sopenharmony_ci state->m_Regs[EB14] = (RFC_Cprog); 6088c2ecf20Sopenharmony_ci status = UpdateReg(state, EP2); 6098c2ecf20Sopenharmony_ci if (status < 0) 6108c2ecf20Sopenharmony_ci break; 6118c2ecf20Sopenharmony_ci status = UpdateReg(state, EB14); 6128c2ecf20Sopenharmony_ci if (status < 0) 6138c2ecf20Sopenharmony_ci break; 6148c2ecf20Sopenharmony_ci 6158c2ecf20Sopenharmony_ci freq_MainPLL = RF_in + 1000000; 6168c2ecf20Sopenharmony_ci status = CalcMainPLL(state, freq_MainPLL); 6178c2ecf20Sopenharmony_ci if (status < 0) 6188c2ecf20Sopenharmony_ci break; 6198c2ecf20Sopenharmony_ci msleep(5); 6208c2ecf20Sopenharmony_ci state->m_Regs[EP4] = (state->m_Regs[EP4] & ~0x03) | 1; /* CAL_mode = 1 */ 6218c2ecf20Sopenharmony_ci status = UpdateReg(state, EP4); 6228c2ecf20Sopenharmony_ci if (status < 0) 6238c2ecf20Sopenharmony_ci break; 6248c2ecf20Sopenharmony_ci status = UpdateReg(state, EP2); /* Launch power measurement */ 6258c2ecf20Sopenharmony_ci if (status < 0) 6268c2ecf20Sopenharmony_ci break; 6278c2ecf20Sopenharmony_ci status = ReadExtented(state, Regs); 6288c2ecf20Sopenharmony_ci if (status < 0) 6298c2ecf20Sopenharmony_ci break; 6308c2ecf20Sopenharmony_ci CID_Gain = Regs[EB10] & 0x3F; 6318c2ecf20Sopenharmony_ci state->m_Regs[ID] = Regs[ID]; /* Chip version, (needed for C1 workaround in CalibrateRF) */ 6328c2ecf20Sopenharmony_ci 6338c2ecf20Sopenharmony_ci *pRF_Out = RF_in; 6348c2ecf20Sopenharmony_ci 6358c2ecf20Sopenharmony_ci while (CID_Gain < CID_Target) { 6368c2ecf20Sopenharmony_ci freq_MainPLL = RF_in + sign * Count + 1000000; 6378c2ecf20Sopenharmony_ci status = CalcMainPLL(state, freq_MainPLL); 6388c2ecf20Sopenharmony_ci if (status < 0) 6398c2ecf20Sopenharmony_ci break; 6408c2ecf20Sopenharmony_ci msleep(wait ? 5 : 1); 6418c2ecf20Sopenharmony_ci wait = false; 6428c2ecf20Sopenharmony_ci status = UpdateReg(state, EP2); /* Launch power measurement */ 6438c2ecf20Sopenharmony_ci if (status < 0) 6448c2ecf20Sopenharmony_ci break; 6458c2ecf20Sopenharmony_ci status = ReadExtented(state, Regs); 6468c2ecf20Sopenharmony_ci if (status < 0) 6478c2ecf20Sopenharmony_ci break; 6488c2ecf20Sopenharmony_ci CID_Gain = Regs[EB10] & 0x3F; 6498c2ecf20Sopenharmony_ci Count += 200000; 6508c2ecf20Sopenharmony_ci 6518c2ecf20Sopenharmony_ci if (Count < CountLimit * 100000) 6528c2ecf20Sopenharmony_ci continue; 6538c2ecf20Sopenharmony_ci if (sign < 0) 6548c2ecf20Sopenharmony_ci break; 6558c2ecf20Sopenharmony_ci 6568c2ecf20Sopenharmony_ci sign = -sign; 6578c2ecf20Sopenharmony_ci Count = 200000; 6588c2ecf20Sopenharmony_ci wait = true; 6598c2ecf20Sopenharmony_ci } 6608c2ecf20Sopenharmony_ci if (status < 0) 6618c2ecf20Sopenharmony_ci break; 6628c2ecf20Sopenharmony_ci if (CID_Gain >= CID_Target) { 6638c2ecf20Sopenharmony_ci *pbcal = true; 6648c2ecf20Sopenharmony_ci *pRF_Out = freq_MainPLL - 1000000; 6658c2ecf20Sopenharmony_ci } else 6668c2ecf20Sopenharmony_ci *pbcal = false; 6678c2ecf20Sopenharmony_ci } while (0); 6688c2ecf20Sopenharmony_ci 6698c2ecf20Sopenharmony_ci return status; 6708c2ecf20Sopenharmony_ci} 6718c2ecf20Sopenharmony_ci 6728c2ecf20Sopenharmony_cistatic int PowerScanInit(struct tda_state *state) 6738c2ecf20Sopenharmony_ci{ 6748c2ecf20Sopenharmony_ci int status = 0; 6758c2ecf20Sopenharmony_ci do { 6768c2ecf20Sopenharmony_ci state->m_Regs[EP3] = (state->m_Regs[EP3] & ~0x1F) | 0x12; 6778c2ecf20Sopenharmony_ci state->m_Regs[EP4] = (state->m_Regs[EP4] & ~0x1F); /* If level = 0, Cal mode = 0 */ 6788c2ecf20Sopenharmony_ci status = UpdateRegs(state, EP3, EP4); 6798c2ecf20Sopenharmony_ci if (status < 0) 6808c2ecf20Sopenharmony_ci break; 6818c2ecf20Sopenharmony_ci state->m_Regs[EB18] = (state->m_Regs[EB18] & ~0x03); /* AGC 1 Gain = 0 */ 6828c2ecf20Sopenharmony_ci status = UpdateReg(state, EB18); 6838c2ecf20Sopenharmony_ci if (status < 0) 6848c2ecf20Sopenharmony_ci break; 6858c2ecf20Sopenharmony_ci state->m_Regs[EB21] = (state->m_Regs[EB21] & ~0x03); /* AGC 2 Gain = 0 (Datasheet = 3) */ 6868c2ecf20Sopenharmony_ci state->m_Regs[EB23] = (state->m_Regs[EB23] | 0x06); /* ForceLP_Fc2_En = 1, LPFc[2] = 1 */ 6878c2ecf20Sopenharmony_ci status = UpdateRegs(state, EB21, EB23); 6888c2ecf20Sopenharmony_ci if (status < 0) 6898c2ecf20Sopenharmony_ci break; 6908c2ecf20Sopenharmony_ci } while (0); 6918c2ecf20Sopenharmony_ci return status; 6928c2ecf20Sopenharmony_ci} 6938c2ecf20Sopenharmony_ci 6948c2ecf20Sopenharmony_cistatic int CalcRFFilterCurve(struct tda_state *state) 6958c2ecf20Sopenharmony_ci{ 6968c2ecf20Sopenharmony_ci int status = 0; 6978c2ecf20Sopenharmony_ci do { 6988c2ecf20Sopenharmony_ci msleep(200); /* Temperature stabilisation */ 6998c2ecf20Sopenharmony_ci status = PowerScanInit(state); 7008c2ecf20Sopenharmony_ci if (status < 0) 7018c2ecf20Sopenharmony_ci break; 7028c2ecf20Sopenharmony_ci status = RFTrackingFiltersInit(state, 0); 7038c2ecf20Sopenharmony_ci if (status < 0) 7048c2ecf20Sopenharmony_ci break; 7058c2ecf20Sopenharmony_ci status = RFTrackingFiltersInit(state, 1); 7068c2ecf20Sopenharmony_ci if (status < 0) 7078c2ecf20Sopenharmony_ci break; 7088c2ecf20Sopenharmony_ci status = RFTrackingFiltersInit(state, 2); 7098c2ecf20Sopenharmony_ci if (status < 0) 7108c2ecf20Sopenharmony_ci break; 7118c2ecf20Sopenharmony_ci status = RFTrackingFiltersInit(state, 3); 7128c2ecf20Sopenharmony_ci if (status < 0) 7138c2ecf20Sopenharmony_ci break; 7148c2ecf20Sopenharmony_ci status = RFTrackingFiltersInit(state, 4); 7158c2ecf20Sopenharmony_ci if (status < 0) 7168c2ecf20Sopenharmony_ci break; 7178c2ecf20Sopenharmony_ci status = RFTrackingFiltersInit(state, 5); 7188c2ecf20Sopenharmony_ci if (status < 0) 7198c2ecf20Sopenharmony_ci break; 7208c2ecf20Sopenharmony_ci status = RFTrackingFiltersInit(state, 6); 7218c2ecf20Sopenharmony_ci if (status < 0) 7228c2ecf20Sopenharmony_ci break; 7238c2ecf20Sopenharmony_ci status = ThermometerRead(state, &state->m_TMValue_RFCal); /* also switches off Cal mode !!! */ 7248c2ecf20Sopenharmony_ci if (status < 0) 7258c2ecf20Sopenharmony_ci break; 7268c2ecf20Sopenharmony_ci } while (0); 7278c2ecf20Sopenharmony_ci 7288c2ecf20Sopenharmony_ci return status; 7298c2ecf20Sopenharmony_ci} 7308c2ecf20Sopenharmony_ci 7318c2ecf20Sopenharmony_cistatic int FixedContentsI2CUpdate(struct tda_state *state) 7328c2ecf20Sopenharmony_ci{ 7338c2ecf20Sopenharmony_ci static u8 InitRegs[] = { 7348c2ecf20Sopenharmony_ci 0x08, 0x80, 0xC6, 7358c2ecf20Sopenharmony_ci 0xDF, 0x16, 0x60, 0x80, 7368c2ecf20Sopenharmony_ci 0x80, 0x00, 0x00, 0x00, 7378c2ecf20Sopenharmony_ci 0x00, 0x00, 0x00, 0x00, 7388c2ecf20Sopenharmony_ci 0xFC, 0x01, 0x84, 0x41, 7398c2ecf20Sopenharmony_ci 0x01, 0x84, 0x40, 0x07, 7408c2ecf20Sopenharmony_ci 0x00, 0x00, 0x96, 0x3F, 7418c2ecf20Sopenharmony_ci 0xC1, 0x00, 0x8F, 0x00, 7428c2ecf20Sopenharmony_ci 0x00, 0x8C, 0x00, 0x20, 7438c2ecf20Sopenharmony_ci 0xB3, 0x48, 0xB0, 7448c2ecf20Sopenharmony_ci }; 7458c2ecf20Sopenharmony_ci int status = 0; 7468c2ecf20Sopenharmony_ci memcpy(&state->m_Regs[TM], InitRegs, EB23 - TM + 1); 7478c2ecf20Sopenharmony_ci do { 7488c2ecf20Sopenharmony_ci status = UpdateRegs(state, TM, EB23); 7498c2ecf20Sopenharmony_ci if (status < 0) 7508c2ecf20Sopenharmony_ci break; 7518c2ecf20Sopenharmony_ci 7528c2ecf20Sopenharmony_ci /* AGC1 gain setup */ 7538c2ecf20Sopenharmony_ci state->m_Regs[EB17] = 0x00; 7548c2ecf20Sopenharmony_ci status = UpdateReg(state, EB17); 7558c2ecf20Sopenharmony_ci if (status < 0) 7568c2ecf20Sopenharmony_ci break; 7578c2ecf20Sopenharmony_ci state->m_Regs[EB17] = 0x03; 7588c2ecf20Sopenharmony_ci status = UpdateReg(state, EB17); 7598c2ecf20Sopenharmony_ci if (status < 0) 7608c2ecf20Sopenharmony_ci break; 7618c2ecf20Sopenharmony_ci state->m_Regs[EB17] = 0x43; 7628c2ecf20Sopenharmony_ci status = UpdateReg(state, EB17); 7638c2ecf20Sopenharmony_ci if (status < 0) 7648c2ecf20Sopenharmony_ci break; 7658c2ecf20Sopenharmony_ci state->m_Regs[EB17] = 0x4C; 7668c2ecf20Sopenharmony_ci status = UpdateReg(state, EB17); 7678c2ecf20Sopenharmony_ci if (status < 0) 7688c2ecf20Sopenharmony_ci break; 7698c2ecf20Sopenharmony_ci 7708c2ecf20Sopenharmony_ci /* IRC Cal Low band */ 7718c2ecf20Sopenharmony_ci state->m_Regs[EP3] = 0x1F; 7728c2ecf20Sopenharmony_ci state->m_Regs[EP4] = 0x66; 7738c2ecf20Sopenharmony_ci state->m_Regs[EP5] = 0x81; 7748c2ecf20Sopenharmony_ci state->m_Regs[CPD] = 0xCC; 7758c2ecf20Sopenharmony_ci state->m_Regs[CD1] = 0x6C; 7768c2ecf20Sopenharmony_ci state->m_Regs[CD2] = 0x00; 7778c2ecf20Sopenharmony_ci state->m_Regs[CD3] = 0x00; 7788c2ecf20Sopenharmony_ci state->m_Regs[MPD] = 0xC5; 7798c2ecf20Sopenharmony_ci state->m_Regs[MD1] = 0x77; 7808c2ecf20Sopenharmony_ci state->m_Regs[MD2] = 0x08; 7818c2ecf20Sopenharmony_ci state->m_Regs[MD3] = 0x00; 7828c2ecf20Sopenharmony_ci status = UpdateRegs(state, EP2, MD3); /* diff between sw and datasheet (ep3-md3) */ 7838c2ecf20Sopenharmony_ci if (status < 0) 7848c2ecf20Sopenharmony_ci break; 7858c2ecf20Sopenharmony_ci 7868c2ecf20Sopenharmony_ci#if 0 7878c2ecf20Sopenharmony_ci state->m_Regs[EB4] = 0x61; /* missing in sw */ 7888c2ecf20Sopenharmony_ci status = UpdateReg(state, EB4); 7898c2ecf20Sopenharmony_ci if (status < 0) 7908c2ecf20Sopenharmony_ci break; 7918c2ecf20Sopenharmony_ci msleep(1); 7928c2ecf20Sopenharmony_ci state->m_Regs[EB4] = 0x41; 7938c2ecf20Sopenharmony_ci status = UpdateReg(state, EB4); 7948c2ecf20Sopenharmony_ci if (status < 0) 7958c2ecf20Sopenharmony_ci break; 7968c2ecf20Sopenharmony_ci#endif 7978c2ecf20Sopenharmony_ci 7988c2ecf20Sopenharmony_ci msleep(5); 7998c2ecf20Sopenharmony_ci status = UpdateReg(state, EP1); 8008c2ecf20Sopenharmony_ci if (status < 0) 8018c2ecf20Sopenharmony_ci break; 8028c2ecf20Sopenharmony_ci msleep(5); 8038c2ecf20Sopenharmony_ci 8048c2ecf20Sopenharmony_ci state->m_Regs[EP5] = 0x85; 8058c2ecf20Sopenharmony_ci state->m_Regs[CPD] = 0xCB; 8068c2ecf20Sopenharmony_ci state->m_Regs[CD1] = 0x66; 8078c2ecf20Sopenharmony_ci state->m_Regs[CD2] = 0x70; 8088c2ecf20Sopenharmony_ci status = UpdateRegs(state, EP3, CD3); 8098c2ecf20Sopenharmony_ci if (status < 0) 8108c2ecf20Sopenharmony_ci break; 8118c2ecf20Sopenharmony_ci msleep(5); 8128c2ecf20Sopenharmony_ci status = UpdateReg(state, EP2); 8138c2ecf20Sopenharmony_ci if (status < 0) 8148c2ecf20Sopenharmony_ci break; 8158c2ecf20Sopenharmony_ci msleep(30); 8168c2ecf20Sopenharmony_ci 8178c2ecf20Sopenharmony_ci /* IRC Cal mid band */ 8188c2ecf20Sopenharmony_ci state->m_Regs[EP5] = 0x82; 8198c2ecf20Sopenharmony_ci state->m_Regs[CPD] = 0xA8; 8208c2ecf20Sopenharmony_ci state->m_Regs[CD2] = 0x00; 8218c2ecf20Sopenharmony_ci state->m_Regs[MPD] = 0xA1; /* Datasheet = 0xA9 */ 8228c2ecf20Sopenharmony_ci state->m_Regs[MD1] = 0x73; 8238c2ecf20Sopenharmony_ci state->m_Regs[MD2] = 0x1A; 8248c2ecf20Sopenharmony_ci status = UpdateRegs(state, EP3, MD3); 8258c2ecf20Sopenharmony_ci if (status < 0) 8268c2ecf20Sopenharmony_ci break; 8278c2ecf20Sopenharmony_ci 8288c2ecf20Sopenharmony_ci msleep(5); 8298c2ecf20Sopenharmony_ci status = UpdateReg(state, EP1); 8308c2ecf20Sopenharmony_ci if (status < 0) 8318c2ecf20Sopenharmony_ci break; 8328c2ecf20Sopenharmony_ci msleep(5); 8338c2ecf20Sopenharmony_ci 8348c2ecf20Sopenharmony_ci state->m_Regs[EP5] = 0x86; 8358c2ecf20Sopenharmony_ci state->m_Regs[CPD] = 0xA8; 8368c2ecf20Sopenharmony_ci state->m_Regs[CD1] = 0x66; 8378c2ecf20Sopenharmony_ci state->m_Regs[CD2] = 0xA0; 8388c2ecf20Sopenharmony_ci status = UpdateRegs(state, EP3, CD3); 8398c2ecf20Sopenharmony_ci if (status < 0) 8408c2ecf20Sopenharmony_ci break; 8418c2ecf20Sopenharmony_ci msleep(5); 8428c2ecf20Sopenharmony_ci status = UpdateReg(state, EP2); 8438c2ecf20Sopenharmony_ci if (status < 0) 8448c2ecf20Sopenharmony_ci break; 8458c2ecf20Sopenharmony_ci msleep(30); 8468c2ecf20Sopenharmony_ci 8478c2ecf20Sopenharmony_ci /* IRC Cal high band */ 8488c2ecf20Sopenharmony_ci state->m_Regs[EP5] = 0x83; 8498c2ecf20Sopenharmony_ci state->m_Regs[CPD] = 0x98; 8508c2ecf20Sopenharmony_ci state->m_Regs[CD1] = 0x65; 8518c2ecf20Sopenharmony_ci state->m_Regs[CD2] = 0x00; 8528c2ecf20Sopenharmony_ci state->m_Regs[MPD] = 0x91; /* Datasheet = 0x91 */ 8538c2ecf20Sopenharmony_ci state->m_Regs[MD1] = 0x71; 8548c2ecf20Sopenharmony_ci state->m_Regs[MD2] = 0xCD; 8558c2ecf20Sopenharmony_ci status = UpdateRegs(state, EP3, MD3); 8568c2ecf20Sopenharmony_ci if (status < 0) 8578c2ecf20Sopenharmony_ci break; 8588c2ecf20Sopenharmony_ci msleep(5); 8598c2ecf20Sopenharmony_ci status = UpdateReg(state, EP1); 8608c2ecf20Sopenharmony_ci if (status < 0) 8618c2ecf20Sopenharmony_ci break; 8628c2ecf20Sopenharmony_ci msleep(5); 8638c2ecf20Sopenharmony_ci state->m_Regs[EP5] = 0x87; 8648c2ecf20Sopenharmony_ci state->m_Regs[CD1] = 0x65; 8658c2ecf20Sopenharmony_ci state->m_Regs[CD2] = 0x50; 8668c2ecf20Sopenharmony_ci status = UpdateRegs(state, EP3, CD3); 8678c2ecf20Sopenharmony_ci if (status < 0) 8688c2ecf20Sopenharmony_ci break; 8698c2ecf20Sopenharmony_ci msleep(5); 8708c2ecf20Sopenharmony_ci status = UpdateReg(state, EP2); 8718c2ecf20Sopenharmony_ci if (status < 0) 8728c2ecf20Sopenharmony_ci break; 8738c2ecf20Sopenharmony_ci msleep(30); 8748c2ecf20Sopenharmony_ci 8758c2ecf20Sopenharmony_ci /* Back to normal */ 8768c2ecf20Sopenharmony_ci state->m_Regs[EP4] = 0x64; 8778c2ecf20Sopenharmony_ci status = UpdateReg(state, EP4); 8788c2ecf20Sopenharmony_ci if (status < 0) 8798c2ecf20Sopenharmony_ci break; 8808c2ecf20Sopenharmony_ci status = UpdateReg(state, EP1); 8818c2ecf20Sopenharmony_ci if (status < 0) 8828c2ecf20Sopenharmony_ci break; 8838c2ecf20Sopenharmony_ci 8848c2ecf20Sopenharmony_ci } while (0); 8858c2ecf20Sopenharmony_ci return status; 8868c2ecf20Sopenharmony_ci} 8878c2ecf20Sopenharmony_ci 8888c2ecf20Sopenharmony_cistatic int InitCal(struct tda_state *state) 8898c2ecf20Sopenharmony_ci{ 8908c2ecf20Sopenharmony_ci int status = 0; 8918c2ecf20Sopenharmony_ci 8928c2ecf20Sopenharmony_ci do { 8938c2ecf20Sopenharmony_ci status = FixedContentsI2CUpdate(state); 8948c2ecf20Sopenharmony_ci if (status < 0) 8958c2ecf20Sopenharmony_ci break; 8968c2ecf20Sopenharmony_ci status = CalcRFFilterCurve(state); 8978c2ecf20Sopenharmony_ci if (status < 0) 8988c2ecf20Sopenharmony_ci break; 8998c2ecf20Sopenharmony_ci status = StandBy(state); 9008c2ecf20Sopenharmony_ci if (status < 0) 9018c2ecf20Sopenharmony_ci break; 9028c2ecf20Sopenharmony_ci /* m_bInitDone = true; */ 9038c2ecf20Sopenharmony_ci } while (0); 9048c2ecf20Sopenharmony_ci return status; 9058c2ecf20Sopenharmony_ci}; 9068c2ecf20Sopenharmony_ci 9078c2ecf20Sopenharmony_cistatic int RFTrackingFiltersCorrection(struct tda_state *state, 9088c2ecf20Sopenharmony_ci u32 Frequency) 9098c2ecf20Sopenharmony_ci{ 9108c2ecf20Sopenharmony_ci int status = 0; 9118c2ecf20Sopenharmony_ci s32 Cprog_table; 9128c2ecf20Sopenharmony_ci u8 RFBand; 9138c2ecf20Sopenharmony_ci u8 dCoverdT; 9148c2ecf20Sopenharmony_ci 9158c2ecf20Sopenharmony_ci if (!SearchMap2(m_RF_Cal_Map, Frequency, &Cprog_table) || 9168c2ecf20Sopenharmony_ci !SearchMap4(m_RF_Band_Map, Frequency, &RFBand) || 9178c2ecf20Sopenharmony_ci !SearchMap1(m_RF_Cal_DC_Over_DT_Map, Frequency, &dCoverdT)) 9188c2ecf20Sopenharmony_ci 9198c2ecf20Sopenharmony_ci return -EINVAL; 9208c2ecf20Sopenharmony_ci 9218c2ecf20Sopenharmony_ci do { 9228c2ecf20Sopenharmony_ci u8 TMValue_Current; 9238c2ecf20Sopenharmony_ci u32 RF1 = state->m_RF1[RFBand]; 9248c2ecf20Sopenharmony_ci u32 RF2 = state->m_RF1[RFBand]; 9258c2ecf20Sopenharmony_ci u32 RF3 = state->m_RF1[RFBand]; 9268c2ecf20Sopenharmony_ci s32 RF_A1 = state->m_RF_A1[RFBand]; 9278c2ecf20Sopenharmony_ci s32 RF_B1 = state->m_RF_B1[RFBand]; 9288c2ecf20Sopenharmony_ci s32 RF_A2 = state->m_RF_A2[RFBand]; 9298c2ecf20Sopenharmony_ci s32 RF_B2 = state->m_RF_B2[RFBand]; 9308c2ecf20Sopenharmony_ci s32 Capprox = 0; 9318c2ecf20Sopenharmony_ci int TComp; 9328c2ecf20Sopenharmony_ci 9338c2ecf20Sopenharmony_ci state->m_Regs[EP3] &= ~0xE0; /* Power up */ 9348c2ecf20Sopenharmony_ci status = UpdateReg(state, EP3); 9358c2ecf20Sopenharmony_ci if (status < 0) 9368c2ecf20Sopenharmony_ci break; 9378c2ecf20Sopenharmony_ci 9388c2ecf20Sopenharmony_ci status = ThermometerRead(state, &TMValue_Current); 9398c2ecf20Sopenharmony_ci if (status < 0) 9408c2ecf20Sopenharmony_ci break; 9418c2ecf20Sopenharmony_ci 9428c2ecf20Sopenharmony_ci if (RF3 == 0 || Frequency < RF2) 9438c2ecf20Sopenharmony_ci Capprox = RF_A1 * ((s32)(Frequency) - (s32)(RF1)) + RF_B1 + Cprog_table; 9448c2ecf20Sopenharmony_ci else 9458c2ecf20Sopenharmony_ci Capprox = RF_A2 * ((s32)(Frequency) - (s32)(RF2)) + RF_B2 + Cprog_table; 9468c2ecf20Sopenharmony_ci 9478c2ecf20Sopenharmony_ci TComp = (int)(dCoverdT) * ((int)(TMValue_Current) - (int)(state->m_TMValue_RFCal))/1000; 9488c2ecf20Sopenharmony_ci 9498c2ecf20Sopenharmony_ci Capprox += TComp; 9508c2ecf20Sopenharmony_ci 9518c2ecf20Sopenharmony_ci if (Capprox < 0) 9528c2ecf20Sopenharmony_ci Capprox = 0; 9538c2ecf20Sopenharmony_ci else if (Capprox > 255) 9548c2ecf20Sopenharmony_ci Capprox = 255; 9558c2ecf20Sopenharmony_ci 9568c2ecf20Sopenharmony_ci 9578c2ecf20Sopenharmony_ci /* TODO Temperature compensation. There is defenitely a scale factor */ 9588c2ecf20Sopenharmony_ci /* missing in the datasheet, so leave it out for now. */ 9598c2ecf20Sopenharmony_ci state->m_Regs[EB14] = Capprox; 9608c2ecf20Sopenharmony_ci 9618c2ecf20Sopenharmony_ci status = UpdateReg(state, EB14); 9628c2ecf20Sopenharmony_ci if (status < 0) 9638c2ecf20Sopenharmony_ci break; 9648c2ecf20Sopenharmony_ci 9658c2ecf20Sopenharmony_ci } while (0); 9668c2ecf20Sopenharmony_ci return status; 9678c2ecf20Sopenharmony_ci} 9688c2ecf20Sopenharmony_ci 9698c2ecf20Sopenharmony_cistatic int ChannelConfiguration(struct tda_state *state, 9708c2ecf20Sopenharmony_ci u32 Frequency, int Standard) 9718c2ecf20Sopenharmony_ci{ 9728c2ecf20Sopenharmony_ci 9738c2ecf20Sopenharmony_ci s32 IntermediateFrequency = m_StandardTable[Standard].m_IFFrequency; 9748c2ecf20Sopenharmony_ci int status = 0; 9758c2ecf20Sopenharmony_ci 9768c2ecf20Sopenharmony_ci u8 BP_Filter = 0; 9778c2ecf20Sopenharmony_ci u8 RF_Band = 0; 9788c2ecf20Sopenharmony_ci u8 GainTaper = 0; 9798c2ecf20Sopenharmony_ci u8 IR_Meas = 0; 9808c2ecf20Sopenharmony_ci 9818c2ecf20Sopenharmony_ci state->IF = IntermediateFrequency; 9828c2ecf20Sopenharmony_ci /* printk("tda18271c2dd: %s Freq = %d Standard = %d IF = %d\n", __func__, Frequency, Standard, IntermediateFrequency); */ 9838c2ecf20Sopenharmony_ci /* get values from tables */ 9848c2ecf20Sopenharmony_ci 9858c2ecf20Sopenharmony_ci if (!(SearchMap1(m_BP_Filter_Map, Frequency, &BP_Filter) && 9868c2ecf20Sopenharmony_ci SearchMap1(m_GainTaper_Map, Frequency, &GainTaper) && 9878c2ecf20Sopenharmony_ci SearchMap1(m_IR_Meas_Map, Frequency, &IR_Meas) && 9888c2ecf20Sopenharmony_ci SearchMap4(m_RF_Band_Map, Frequency, &RF_Band))) { 9898c2ecf20Sopenharmony_ci 9908c2ecf20Sopenharmony_ci printk(KERN_ERR "tda18271c2dd: %s SearchMap failed\n", __func__); 9918c2ecf20Sopenharmony_ci return -EINVAL; 9928c2ecf20Sopenharmony_ci } 9938c2ecf20Sopenharmony_ci 9948c2ecf20Sopenharmony_ci do { 9958c2ecf20Sopenharmony_ci state->m_Regs[EP3] = (state->m_Regs[EP3] & ~0x1F) | m_StandardTable[Standard].m_EP3_4_0; 9968c2ecf20Sopenharmony_ci state->m_Regs[EP3] &= ~0x04; /* switch RFAGC to high speed mode */ 9978c2ecf20Sopenharmony_ci 9988c2ecf20Sopenharmony_ci /* m_EP4 default for XToutOn, CAL_Mode (0) */ 9998c2ecf20Sopenharmony_ci state->m_Regs[EP4] = state->m_EP4 | ((Standard > HF_AnalogMax) ? state->m_IFLevelDigital : state->m_IFLevelAnalog); 10008c2ecf20Sopenharmony_ci /* state->m_Regs[EP4] = state->m_EP4 | state->m_IFLevelDigital; */ 10018c2ecf20Sopenharmony_ci if (Standard <= HF_AnalogMax) 10028c2ecf20Sopenharmony_ci state->m_Regs[EP4] = state->m_EP4 | state->m_IFLevelAnalog; 10038c2ecf20Sopenharmony_ci else if (Standard <= HF_ATSC) 10048c2ecf20Sopenharmony_ci state->m_Regs[EP4] = state->m_EP4 | state->m_IFLevelDVBT; 10058c2ecf20Sopenharmony_ci else if (Standard <= HF_DVBC) 10068c2ecf20Sopenharmony_ci state->m_Regs[EP4] = state->m_EP4 | state->m_IFLevelDVBC; 10078c2ecf20Sopenharmony_ci else 10088c2ecf20Sopenharmony_ci state->m_Regs[EP4] = state->m_EP4 | state->m_IFLevelDigital; 10098c2ecf20Sopenharmony_ci 10108c2ecf20Sopenharmony_ci if ((Standard == HF_FM_Radio) && state->m_bFMInput) 10118c2ecf20Sopenharmony_ci state->m_Regs[EP4] |= 0x80; 10128c2ecf20Sopenharmony_ci 10138c2ecf20Sopenharmony_ci state->m_Regs[MPD] &= ~0x80; 10148c2ecf20Sopenharmony_ci if (Standard > HF_AnalogMax) 10158c2ecf20Sopenharmony_ci state->m_Regs[MPD] |= 0x80; /* Add IF_notch for digital */ 10168c2ecf20Sopenharmony_ci 10178c2ecf20Sopenharmony_ci state->m_Regs[EB22] = m_StandardTable[Standard].m_EB22; 10188c2ecf20Sopenharmony_ci 10198c2ecf20Sopenharmony_ci /* Note: This is missing from flowchart in TDA18271 specification ( 1.5 MHz cutoff for FM ) */ 10208c2ecf20Sopenharmony_ci if (Standard == HF_FM_Radio) 10218c2ecf20Sopenharmony_ci state->m_Regs[EB23] |= 0x06; /* ForceLP_Fc2_En = 1, LPFc[2] = 1 */ 10228c2ecf20Sopenharmony_ci else 10238c2ecf20Sopenharmony_ci state->m_Regs[EB23] &= ~0x06; /* ForceLP_Fc2_En = 0, LPFc[2] = 0 */ 10248c2ecf20Sopenharmony_ci 10258c2ecf20Sopenharmony_ci status = UpdateRegs(state, EB22, EB23); 10268c2ecf20Sopenharmony_ci if (status < 0) 10278c2ecf20Sopenharmony_ci break; 10288c2ecf20Sopenharmony_ci 10298c2ecf20Sopenharmony_ci state->m_Regs[EP1] = (state->m_Regs[EP1] & ~0x07) | 0x40 | BP_Filter; /* Dis_Power_level = 1, Filter */ 10308c2ecf20Sopenharmony_ci state->m_Regs[EP5] = (state->m_Regs[EP5] & ~0x07) | IR_Meas; 10318c2ecf20Sopenharmony_ci state->m_Regs[EP2] = (RF_Band << 5) | GainTaper; 10328c2ecf20Sopenharmony_ci 10338c2ecf20Sopenharmony_ci state->m_Regs[EB1] = (state->m_Regs[EB1] & ~0x07) | 10348c2ecf20Sopenharmony_ci (state->m_bMaster ? 0x04 : 0x00); /* CALVCO_FortLOn = MS */ 10358c2ecf20Sopenharmony_ci /* AGC1_always_master = 0 */ 10368c2ecf20Sopenharmony_ci /* AGC_firstn = 0 */ 10378c2ecf20Sopenharmony_ci status = UpdateReg(state, EB1); 10388c2ecf20Sopenharmony_ci if (status < 0) 10398c2ecf20Sopenharmony_ci break; 10408c2ecf20Sopenharmony_ci 10418c2ecf20Sopenharmony_ci if (state->m_bMaster) { 10428c2ecf20Sopenharmony_ci status = CalcMainPLL(state, Frequency + IntermediateFrequency); 10438c2ecf20Sopenharmony_ci if (status < 0) 10448c2ecf20Sopenharmony_ci break; 10458c2ecf20Sopenharmony_ci status = UpdateRegs(state, TM, EP5); 10468c2ecf20Sopenharmony_ci if (status < 0) 10478c2ecf20Sopenharmony_ci break; 10488c2ecf20Sopenharmony_ci state->m_Regs[EB4] |= 0x20; /* LO_forceSrce = 1 */ 10498c2ecf20Sopenharmony_ci status = UpdateReg(state, EB4); 10508c2ecf20Sopenharmony_ci if (status < 0) 10518c2ecf20Sopenharmony_ci break; 10528c2ecf20Sopenharmony_ci msleep(1); 10538c2ecf20Sopenharmony_ci state->m_Regs[EB4] &= ~0x20; /* LO_forceSrce = 0 */ 10548c2ecf20Sopenharmony_ci status = UpdateReg(state, EB4); 10558c2ecf20Sopenharmony_ci if (status < 0) 10568c2ecf20Sopenharmony_ci break; 10578c2ecf20Sopenharmony_ci } else { 10588c2ecf20Sopenharmony_ci u8 PostDiv = 0; 10598c2ecf20Sopenharmony_ci u8 Div; 10608c2ecf20Sopenharmony_ci status = CalcCalPLL(state, Frequency + IntermediateFrequency); 10618c2ecf20Sopenharmony_ci if (status < 0) 10628c2ecf20Sopenharmony_ci break; 10638c2ecf20Sopenharmony_ci 10648c2ecf20Sopenharmony_ci SearchMap3(m_Cal_PLL_Map, Frequency + IntermediateFrequency, &PostDiv, &Div); 10658c2ecf20Sopenharmony_ci state->m_Regs[MPD] = (state->m_Regs[MPD] & ~0x7F) | (PostDiv & 0x77); 10668c2ecf20Sopenharmony_ci status = UpdateReg(state, MPD); 10678c2ecf20Sopenharmony_ci if (status < 0) 10688c2ecf20Sopenharmony_ci break; 10698c2ecf20Sopenharmony_ci status = UpdateRegs(state, TM, EP5); 10708c2ecf20Sopenharmony_ci if (status < 0) 10718c2ecf20Sopenharmony_ci break; 10728c2ecf20Sopenharmony_ci 10738c2ecf20Sopenharmony_ci state->m_Regs[EB7] |= 0x20; /* CAL_forceSrce = 1 */ 10748c2ecf20Sopenharmony_ci status = UpdateReg(state, EB7); 10758c2ecf20Sopenharmony_ci if (status < 0) 10768c2ecf20Sopenharmony_ci break; 10778c2ecf20Sopenharmony_ci msleep(1); 10788c2ecf20Sopenharmony_ci state->m_Regs[EB7] &= ~0x20; /* CAL_forceSrce = 0 */ 10798c2ecf20Sopenharmony_ci status = UpdateReg(state, EB7); 10808c2ecf20Sopenharmony_ci if (status < 0) 10818c2ecf20Sopenharmony_ci break; 10828c2ecf20Sopenharmony_ci } 10838c2ecf20Sopenharmony_ci msleep(20); 10848c2ecf20Sopenharmony_ci if (Standard != HF_FM_Radio) 10858c2ecf20Sopenharmony_ci state->m_Regs[EP3] |= 0x04; /* RFAGC to normal mode */ 10868c2ecf20Sopenharmony_ci status = UpdateReg(state, EP3); 10878c2ecf20Sopenharmony_ci if (status < 0) 10888c2ecf20Sopenharmony_ci break; 10898c2ecf20Sopenharmony_ci 10908c2ecf20Sopenharmony_ci } while (0); 10918c2ecf20Sopenharmony_ci return status; 10928c2ecf20Sopenharmony_ci} 10938c2ecf20Sopenharmony_ci 10948c2ecf20Sopenharmony_cistatic int sleep(struct dvb_frontend *fe) 10958c2ecf20Sopenharmony_ci{ 10968c2ecf20Sopenharmony_ci struct tda_state *state = fe->tuner_priv; 10978c2ecf20Sopenharmony_ci 10988c2ecf20Sopenharmony_ci StandBy(state); 10998c2ecf20Sopenharmony_ci return 0; 11008c2ecf20Sopenharmony_ci} 11018c2ecf20Sopenharmony_ci 11028c2ecf20Sopenharmony_cistatic int init(struct dvb_frontend *fe) 11038c2ecf20Sopenharmony_ci{ 11048c2ecf20Sopenharmony_ci return 0; 11058c2ecf20Sopenharmony_ci} 11068c2ecf20Sopenharmony_ci 11078c2ecf20Sopenharmony_cistatic void release(struct dvb_frontend *fe) 11088c2ecf20Sopenharmony_ci{ 11098c2ecf20Sopenharmony_ci kfree(fe->tuner_priv); 11108c2ecf20Sopenharmony_ci fe->tuner_priv = NULL; 11118c2ecf20Sopenharmony_ci} 11128c2ecf20Sopenharmony_ci 11138c2ecf20Sopenharmony_ci 11148c2ecf20Sopenharmony_cistatic int set_params(struct dvb_frontend *fe) 11158c2ecf20Sopenharmony_ci{ 11168c2ecf20Sopenharmony_ci struct tda_state *state = fe->tuner_priv; 11178c2ecf20Sopenharmony_ci int status = 0; 11188c2ecf20Sopenharmony_ci int Standard; 11198c2ecf20Sopenharmony_ci u32 bw = fe->dtv_property_cache.bandwidth_hz; 11208c2ecf20Sopenharmony_ci u32 delsys = fe->dtv_property_cache.delivery_system; 11218c2ecf20Sopenharmony_ci 11228c2ecf20Sopenharmony_ci state->m_Frequency = fe->dtv_property_cache.frequency; 11238c2ecf20Sopenharmony_ci 11248c2ecf20Sopenharmony_ci switch (delsys) { 11258c2ecf20Sopenharmony_ci case SYS_DVBT: 11268c2ecf20Sopenharmony_ci case SYS_DVBT2: 11278c2ecf20Sopenharmony_ci switch (bw) { 11288c2ecf20Sopenharmony_ci case 6000000: 11298c2ecf20Sopenharmony_ci Standard = HF_DVBT_6MHZ; 11308c2ecf20Sopenharmony_ci break; 11318c2ecf20Sopenharmony_ci case 7000000: 11328c2ecf20Sopenharmony_ci Standard = HF_DVBT_7MHZ; 11338c2ecf20Sopenharmony_ci break; 11348c2ecf20Sopenharmony_ci case 8000000: 11358c2ecf20Sopenharmony_ci Standard = HF_DVBT_8MHZ; 11368c2ecf20Sopenharmony_ci break; 11378c2ecf20Sopenharmony_ci default: 11388c2ecf20Sopenharmony_ci return -EINVAL; 11398c2ecf20Sopenharmony_ci } 11408c2ecf20Sopenharmony_ci break; 11418c2ecf20Sopenharmony_ci case SYS_DVBC_ANNEX_A: 11428c2ecf20Sopenharmony_ci case SYS_DVBC_ANNEX_C: 11438c2ecf20Sopenharmony_ci if (bw <= 6000000) 11448c2ecf20Sopenharmony_ci Standard = HF_DVBC_6MHZ; 11458c2ecf20Sopenharmony_ci else if (bw <= 7000000) 11468c2ecf20Sopenharmony_ci Standard = HF_DVBC_7MHZ; 11478c2ecf20Sopenharmony_ci else 11488c2ecf20Sopenharmony_ci Standard = HF_DVBC_8MHZ; 11498c2ecf20Sopenharmony_ci break; 11508c2ecf20Sopenharmony_ci default: 11518c2ecf20Sopenharmony_ci return -EINVAL; 11528c2ecf20Sopenharmony_ci } 11538c2ecf20Sopenharmony_ci do { 11548c2ecf20Sopenharmony_ci status = RFTrackingFiltersCorrection(state, state->m_Frequency); 11558c2ecf20Sopenharmony_ci if (status < 0) 11568c2ecf20Sopenharmony_ci break; 11578c2ecf20Sopenharmony_ci status = ChannelConfiguration(state, state->m_Frequency, 11588c2ecf20Sopenharmony_ci Standard); 11598c2ecf20Sopenharmony_ci if (status < 0) 11608c2ecf20Sopenharmony_ci break; 11618c2ecf20Sopenharmony_ci 11628c2ecf20Sopenharmony_ci msleep(state->m_SettlingTime); /* Allow AGC's to settle down */ 11638c2ecf20Sopenharmony_ci } while (0); 11648c2ecf20Sopenharmony_ci return status; 11658c2ecf20Sopenharmony_ci} 11668c2ecf20Sopenharmony_ci 11678c2ecf20Sopenharmony_ci#if 0 11688c2ecf20Sopenharmony_cistatic int GetSignalStrength(s32 *pSignalStrength, u32 RFAgc, u32 IFAgc) 11698c2ecf20Sopenharmony_ci{ 11708c2ecf20Sopenharmony_ci if (IFAgc < 500) { 11718c2ecf20Sopenharmony_ci /* Scale this from 0 to 50000 */ 11728c2ecf20Sopenharmony_ci *pSignalStrength = IFAgc * 100; 11738c2ecf20Sopenharmony_ci } else { 11748c2ecf20Sopenharmony_ci /* Scale range 500-1500 to 50000-80000 */ 11758c2ecf20Sopenharmony_ci *pSignalStrength = 50000 + (IFAgc - 500) * 30; 11768c2ecf20Sopenharmony_ci } 11778c2ecf20Sopenharmony_ci 11788c2ecf20Sopenharmony_ci return 0; 11798c2ecf20Sopenharmony_ci} 11808c2ecf20Sopenharmony_ci#endif 11818c2ecf20Sopenharmony_ci 11828c2ecf20Sopenharmony_cistatic int get_if_frequency(struct dvb_frontend *fe, u32 *frequency) 11838c2ecf20Sopenharmony_ci{ 11848c2ecf20Sopenharmony_ci struct tda_state *state = fe->tuner_priv; 11858c2ecf20Sopenharmony_ci 11868c2ecf20Sopenharmony_ci *frequency = state->IF; 11878c2ecf20Sopenharmony_ci return 0; 11888c2ecf20Sopenharmony_ci} 11898c2ecf20Sopenharmony_ci 11908c2ecf20Sopenharmony_cistatic int get_bandwidth(struct dvb_frontend *fe, u32 *bandwidth) 11918c2ecf20Sopenharmony_ci{ 11928c2ecf20Sopenharmony_ci /* struct tda_state *state = fe->tuner_priv; */ 11938c2ecf20Sopenharmony_ci /* *bandwidth = priv->bandwidth; */ 11948c2ecf20Sopenharmony_ci return 0; 11958c2ecf20Sopenharmony_ci} 11968c2ecf20Sopenharmony_ci 11978c2ecf20Sopenharmony_ci 11988c2ecf20Sopenharmony_cistatic const struct dvb_tuner_ops tuner_ops = { 11998c2ecf20Sopenharmony_ci .info = { 12008c2ecf20Sopenharmony_ci .name = "NXP TDA18271C2D", 12018c2ecf20Sopenharmony_ci .frequency_min_hz = 47125 * kHz, 12028c2ecf20Sopenharmony_ci .frequency_max_hz = 865 * MHz, 12038c2ecf20Sopenharmony_ci .frequency_step_hz = 62500 12048c2ecf20Sopenharmony_ci }, 12058c2ecf20Sopenharmony_ci .init = init, 12068c2ecf20Sopenharmony_ci .sleep = sleep, 12078c2ecf20Sopenharmony_ci .set_params = set_params, 12088c2ecf20Sopenharmony_ci .release = release, 12098c2ecf20Sopenharmony_ci .get_if_frequency = get_if_frequency, 12108c2ecf20Sopenharmony_ci .get_bandwidth = get_bandwidth, 12118c2ecf20Sopenharmony_ci}; 12128c2ecf20Sopenharmony_ci 12138c2ecf20Sopenharmony_cistruct dvb_frontend *tda18271c2dd_attach(struct dvb_frontend *fe, 12148c2ecf20Sopenharmony_ci struct i2c_adapter *i2c, u8 adr) 12158c2ecf20Sopenharmony_ci{ 12168c2ecf20Sopenharmony_ci struct tda_state *state; 12178c2ecf20Sopenharmony_ci 12188c2ecf20Sopenharmony_ci state = kzalloc(sizeof(struct tda_state), GFP_KERNEL); 12198c2ecf20Sopenharmony_ci if (!state) 12208c2ecf20Sopenharmony_ci return NULL; 12218c2ecf20Sopenharmony_ci 12228c2ecf20Sopenharmony_ci fe->tuner_priv = state; 12238c2ecf20Sopenharmony_ci state->adr = adr; 12248c2ecf20Sopenharmony_ci state->i2c = i2c; 12258c2ecf20Sopenharmony_ci memcpy(&fe->ops.tuner_ops, &tuner_ops, sizeof(struct dvb_tuner_ops)); 12268c2ecf20Sopenharmony_ci reset(state); 12278c2ecf20Sopenharmony_ci InitCal(state); 12288c2ecf20Sopenharmony_ci 12298c2ecf20Sopenharmony_ci return fe; 12308c2ecf20Sopenharmony_ci} 12318c2ecf20Sopenharmony_ciEXPORT_SYMBOL_GPL(tda18271c2dd_attach); 12328c2ecf20Sopenharmony_ci 12338c2ecf20Sopenharmony_ciMODULE_DESCRIPTION("TDA18271C2 driver"); 12348c2ecf20Sopenharmony_ciMODULE_AUTHOR("DD"); 12358c2ecf20Sopenharmony_ciMODULE_LICENSE("GPL"); 1236