annotate doc/Leonardo-target @ 639:026c98f757a6

tpudrv12.h & targets/gtm900.h: our current support is for MGC2GSMT version only As it turns out, there exist two different Huawei-made hw platforms both bearing the marketing name GTM900-B: one is MG01GSMT, the other is MGC2GSMT. The two are NOT fw-compatible: aside from flash chip differences which should be handled by autodetection, the two hw platforms are already known to have different RFFEs with different control signals, and there may be other differences not yet known. Our current gtm900 build target is for MGC2GSMT only; we do not yet have a specimen of MG01GSMT on hand, hence no support for that version will be possible until and unless someone provides one.
author Mychaela Falconia <falcon@freecalypso.org>
date Thu, 30 Jan 2020 18:19:01 +0000
parents 6edd9be81b94
children edaceb78719a
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1 TI's primary development platform for TCS211 firmware was D-Sample - see our
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2 D-Sample article for explanation of our current limited support for that target
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3 in FC Magnetite - but they also had another platform called Leonardo. The
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4 primary difference is the RF section: D-Sample had Clara RF (the one for which
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5 we lack support), whereas Leonardo was TI's reference platform for Rita RF and
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6 for the complete Calypso+Iota+Rita chipset. Another major difference is that
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7 D-Sample was a single stable platform, whereas Leonardo was made in a
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8 bewildering assortment of different variants.
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9
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10 We (FreeCalypso core team) never succeeded in getting our hands on a real
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11 TI-made Leonardo board of any variant, but we do have a Leonardo build target
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12 in FC Magnetite for two reasons:
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13
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14 1) Adding this build target was trivial: our starting hw target for which we
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15 got our original starting-point fw was Openmoko's embedded GSM/GPRS modem,
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16 and that modem is a very close derivative of Leonardo. The only firmware-
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17 affecting diff between Leonardo and OM's modem is FIC/OM's reshuffling of
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18 TSPACT control lines for their triband RFFE; producing a build configuration
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19 with these TSPACT control signals put back into their original Leonardo
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20 arrangement became trivial once our reconstruction of tpudrv12.c from
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21 disassembly of tpudrv12.obj reached production quality.
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22
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23 2) At the end of 2019 we discovered a certain modem module which we call Tango,
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24 and this Tango module is essentially a mass-produced version of TI's Leonardo
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25 core. Tango is just the core of Leonardo, without any peripherals, thus a
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26 proper fw build target for any given Tango-based platform is going to be a
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27 little different from Leonardo in terms of GPIO and other peripheral config
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28 (see our tangomdm target), but initially we ran our Magnetite-Leonardo fw
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29 (built for target leonardo) on our Caramel board - it runs just fine except
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30 for GPIO config being slightly wrong, leaving a few GPIO lines floating.
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31
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32 Supported Leonardo variants
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33 ===========================
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34
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35 RF bands: there were several Leonardo variants with full quadband RF using Epcos
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36 M034F FEM, and there were several more variants with artifically restricted RF,
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37 using a dual-band/single-region FEM and supporting only the two EU bands. The
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38 two versions should be firmware-compatible according to our available schematics
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39 (the same TSPACT signals are used for Tx control), thus our Magnetite-Leonardo
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40 fw should run on any Leonardo variant that matches any of our known schematic
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41 versions at least in the principal aspects.
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42
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43 Flash memory: our Magnetite-Leonardo fw supports the following flash chips for
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44 FFS:
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45
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46 4 MiB: Fujitsu MBM29DL320FB or MBM29DL320FT
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47 8 MiB: Am29DL640G or its Fujitsu equivalent, or any MCP containing this flash
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48 16 MiB: Spansion PL129J or its AMD predecessor, second bank on nCS2
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49
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50 If anyone finds a Leonardo variant with some other flash, it may not be
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51 supported out of the box - but our included FFS configs for the Leonardo target
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52 come directly from TI's original TCS211 version (it is highly unlikely that OM
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53 changed anything other than adding their Samsung flash), thus we support
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54 everything that TI's own TCS211 supported out of the box.
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55
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56 Memory size limits
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57 ==================
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58
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59 The linker script template we use for target leonardo has memory region size
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60 limits set as follows: 8 MiB of flash, 2 MiB of XRAM and 512 KiB of IRAM. If
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61 you are working with a Leonardo or Leonardo-compatible board that has smaller
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62 flash or XRAM, or has a Calypso Lite chip with only 256 KiB of IRAM, then you
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63 have to manually ensure that you stay within your actual memory limits, as you
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64 won't get a failing link unless you exceed the larger linker script limits.
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65
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66 If you are building a modem-only fw configuration (l1reconst or hybrid), it
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67 will fit into under 3 MiB of flash (fitting into a 4 MiB flash chip together
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68 with FFS), 512 KiB of XRAM and 256 KiB of IRAM, so you are safe unless you are
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69 going to add a lot of your own code or data space. But if you are going to
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70 build a UI-enabled fw config (2092 or hybrid-ui), then you will need at least
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71 an 8 MiB flash chip (won't fit into a 4 MiB chip together with FFS) and at least
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72 1 MiB of XRAM. So far all of our configs fit into 256 KiB of IRAM.
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73
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74 Different Calypso chip versions
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75 ===============================
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76
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77 If you specify the build target as just leonardo, your fw will be configured
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78 and built for the leonardo-dsp36 target. If you actually need leonardo-c05b or
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79 leonardo-dsp34 because your board has an older Calypso chip version on it, then
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80 you will need to specify the build target as just stated - see the
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81 Calypso-version-override article.
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83 Calypso GPIO 2 configuration
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84 ============================
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85
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86 On TI's C-Sample and D-Sample boards Calypso GPIO 2 is wired to serve as the DCD
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87 output for the MODEM UART (Calypso device as DCE), and our FC Magnetite firmware
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88 drives it as such on D-Sample, FCDEV3B and GTM900 targets. But this same config
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89 does NOT apply to Leonardo: on the latter boards GPIO 2 is wired in a way that
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90 requires it to be configured as an input to Calypso, not an output.
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91
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92 TI's TCS211 firmware had this Leonardo GPIO 2 situation handled in a very
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93 bizarre manner: the main GPIO init code in AI_InitIOConfig() in armio.c made no
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94 differentiation between D-Sample and Leonardo and configured GPIO 2 as an
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95 output, then the init code in uartfax.c did the same setup again, but at the
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96 end of the Init_Serial_Flows() function in the init module (which we only got
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97 as init.obj, with init.c censored out) they inserted a bit of code that switches
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98 GPIO 2 to be an input. What a mess.
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99
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100 Our handling of this GPIO 2 situation in FC Magnetite is much cleaner: we have
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101 put an #ifndef CONFIG_TARGET_LEONARDO around the AI_ConfigBitAsOutput(2) call
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102 in AI_InitIOConfig() so this GPIO line never becomes an output in the first
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103 place, and our targets/leonardo.h configuration header defines
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104 UARTFAX_CLASSIC_DTR_DCD to 0 on this target, disabling that code in the
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105 uartfax.c driver.
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106
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107 This peculiar GPIO 2 situation applies only to real Leonardo boards, not to
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108 Tango modems: a custom design using a Tango module can use this GPIO line for
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109 anything, but on Caramel boards it drives RS-232 DCD like on D-Sample and thus
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110 should be configured as a Calypso output.
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111
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112 Other GPIO and multifunction pins
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113 =================================
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114
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115 Our Magnetite-Leonardo fw is unchanged from TI's TCS211 original in that GPIO0,
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116 TSPDI/GPIO4 and DSR_MODEM/LPG pins are left configured as inputs, even though
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117 the schematics we've got show GPIO0 as an output and the other two pins as
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118 unconnected, in which case they should also be configured as outputs in order
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119 to not float. We are leaving this aspect unchanged currently because this
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120 Magnetite-Leonardo fw build target is really just a reference for practically
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121 non-existent hw, and given the unknown of what other Leonardo variants may have
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122 existed once beyond our known schematics, we would rather leave a few floating
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123 inputs than risk causing a driver conflict on some unknown board.
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124
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125 In the case of Tango these 3 just-mentioned Calypso signals are contained inside
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126 the module (not brought out), and it is currently unknown if they are simply
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127 unconnected or if perhaps they are tied to either GND or V-IO inside the module.
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128 The Tango manuf's original fw leaves these signals in their power-up default as
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129 Calypso inputs, hence we do the same currently in order to not risk causing a
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130 short. At some later time when our finances allow doing so, we may send a
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131 sacrificial Tango module for destructive PCB reverse eng and see what is really
6edd9be81b94 doc/Leonardo-target: update for Tango and Caramel
Mychaela Falconia <falcon@freecalypso.org>
parents: 630
diff changeset
132 done with these Calypso signals - if they are really unconnected, then we can
6edd9be81b94 doc/Leonardo-target: update for Tango and Caramel
Mychaela Falconia <falcon@freecalypso.org>
parents: 630
diff changeset
133 change the code to switch them to outputs, just like we have done for the
6edd9be81b94 doc/Leonardo-target: update for Tango and Caramel
Mychaela Falconia <falcon@freecalypso.org>
parents: 630
diff changeset
134 gtamodem target where the original manuf's official fw also left a bunch of
6edd9be81b94 doc/Leonardo-target: update for Tango and Caramel
Mychaela Falconia <falcon@freecalypso.org>
parents: 630
diff changeset
135 floating inputs.