FreeCalypso > hg > tcs211-l1-reconst
annotate STATUS @ 306:a7f15f8a2d8b
l1p_cmpl.c: l1ps_ctrl_pdtch() reconstructed
author | Mychaela Falconia <falcon@freecalypso.org> |
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date | Mon, 02 Oct 2017 18:40:18 +0000 |
parents | f2f7f4dff6d7 |
children | 7ad882cbce4c |
rev | line source |
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283
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1 Objects in l1_ext.lib: |
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2 |
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3 l1_afunc.obj: not exact, see explanation below |
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4 l1_async.obj: perfect match |
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5 l1_cmplx.obj: perfect match to 20070608 version except line number points |
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6 l1_init.obj: perfect match |
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7 l1_pwmgr.obj: perfect match |
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8 l1_small.obj: perfect match |
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9 l1_sync.obj: not exact, see explanation below |
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10 l1_trace.obj: bits match perfectly, diff only in symbolic metadata |
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11 |
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12 l1_dyn_dwl_afunc.obj: perfect match |
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13 l1_dyn_dwl_apihisr.obj: perfect match |
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14 l1_dyn_dwl_async.obj: perfect match |
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15 l1_dyn_dwl_func.obj: not exact, see explanation below |
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16 l1_dyn_dwl_init.obj: sole diff is in the num_of_primitives oddity, |
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17 see explanation below |
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18 l1_dyn_dwl_sync.obj: perfect match |
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19 |
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20 l1audio_abb.obj: perfect match |
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21 l1audio_afunc.obj: bits match perfectly, diff only in symbolic metadata |
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22 l1audio_async.obj: diffs only in register alloc and symbolic metadata |
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23 l1audio_back.obj: perfect match |
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24 l1audio_drive.obj: perfect match |
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25 l1audio_init.obj: perfect match |
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26 |
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27 l1tm_async.obj: bits match perfectly, diff only in the line number points |
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28 l1tm_func.obj: bits match perfectly, diffs only in symbolic and line numbers |
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29 l1tm_stats.obj: perfect match |
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30 |
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31 Objects in l1_int.lib: |
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32 |
288
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33 dl1_com.obj: not exact, see analysis below |
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34 l1_api_hisr.obj: perfect match |
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35 l1_cmplx_intram.obj: perfect match to 20070608 version |
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36 l1_ctl.obj: perfect match to 20070608 version |
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37 l1_drive.obj: perfect match |
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38 l1_func.obj: perfect match |
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39 l1_mfmgr.obj: perfect match |
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40 l1_sync_intram.obj: not exact, see explanation below |
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41 |
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42 l1audio_func.obj: perfect match |
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43 l1audio_sync.obj: perfect match |
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44 |
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45 Objects in l1_custom_ext.lib: |
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46 |
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47 l1audio_cust.obj: dead functions not reconstructed, perfect match |
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48 otherwise |
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49 l1tm_cust.obj: perfect match |
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50 l1tm_tpu12.obj: perfect match |
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51 |
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52 Objects in l1_custom_int.lib: |
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53 |
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54 ind_os.obj: perfect match |
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55 l1_cust.obj: perfect match |
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56 |
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57 Objects in tpudrv.lib: |
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58 |
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59 tpudrv.obj: perfect match |
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60 tpudrv12.obj: not exact, see analysis below |
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61 |
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62 Detailed analysis of differences, i.e., cases where the reconstructed C code |
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63 compiles into an object that is not bit-identical to the original blob: |
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64 |
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65 l1_afunc.obj: |
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66 |
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67 The l1_afunc.c module from LoCosto is used without any changes: |
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68 it compiled right away after adding one constant to l1_const.h, |
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69 and the result of recompilation is identical to the original up until |
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70 the l1a_clip_txpwr() function, which is the last function in the module. |
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71 |
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72 Disassembly of the original blob version of this function has been |
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73 analyzed and found to be identical in logic to the available C code, |
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74 but there must have been some change to the code expression that |
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75 results in different output from the compiler. In particular, the |
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76 symbolic info indicates the presence of a local variable named power |
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77 in the original, but no such local var exists in the LoCosto version. |
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78 The TSM30 version was of no help as it is entirely different there. |
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79 |
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80 See g23m/objdiff/l1_ext/l1_afunc.notes for further info. |
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81 |
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82 l1_sync.obj: |
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83 |
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84 The last function in this module is l1s_dedicated_mode_manager(); |
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85 the two preceding functions match perfectly, but for this last function |
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86 when the reconstructed code is recompiled, the compiler's register |
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87 allocator makes different picks for reasons that could not be |
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88 successfully reversed. Because the code is compiled in Thumb mode |
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89 and the compiler made a different choice between low and high registers |
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90 in some places, the instructions do not line perfectly. The logic match |
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91 has instead been verified by manual comparison. |
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92 |
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93 l1_sync_intram.obj: |
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94 |
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95 Similar situation in the l1s_schedule_tasks() function: the function |
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96 is huge, there is an unknown set of factors determining what the |
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97 compiler's register allocator will do, and in this case there is even |
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98 a difference in the choice of register vs. stack for some temporaries. |
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99 As a result, the code does not line up and the logic had to be verified |
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100 manually. All other functions (preceding and following) match |
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101 perfectly. |
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102 |
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103 dl1_com.obj: |
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104 |
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105 The reconstruction of this module is not exact, but the logic has |
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106 been verified to be an exact match except for the removal of some |
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107 non-functional bogons. Specifically: |
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108 |
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109 l1_create_ISR(): diff in one local variable name (result vs. status), |
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110 affects the generated assert string, but the length stays the same. |
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111 This assert string also contains the line number which differs |
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112 (3 digits in both cases), and the location of the string changes |
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113 because of the diffs in later functions listed below. |
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114 Verified exact match otherwise. |
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115 |
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116 TP_FrameIntHandler(): verified exact match. |
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117 |
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118 layer_1_sync_HISR_entry(): the version in the blob contains a |
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119 non-functional bogon which has not been reconstructed, see the |
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120 comments in the reconstructed source. Verified to be an exact match |
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121 except for the removal of this bogon. |
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122 |
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123 rx_tch_data(): empty function in both versions, trivial exact match. |
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124 |
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125 tx_tch_data(): this stub function is supposed to return a pointer, |
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126 but the original blob does a bare bx lr, returning whatever happens to |
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127 be in r0 on entry, which is unpredictable as the function takes no |
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128 arguments. The reconstructed version returns NULL. |
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129 |
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130 Strings and literals after the functions: manually verified to be an |
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131 exact match. |
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132 |
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133 .bss section: the original blob contains these defunct uninitialized |
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134 data objects: BACK_queue, DLL1_queue, L1C1_queue, RRM1_queue, pool_52, |
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135 pool_100, pool_400, pool_1600, and a static variable i in |
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136 layer_1_sync_HISR_entry() related to the bogon mentioned above. These |
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137 global data objects are not referenced from anywhere else in the |
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138 firmware and the link succeeds without them being present, hence they |
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139 have been omitted from the reconstruction. The rest is an exact match. |
284
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140 |
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141 l1_dyn_dwl_func.obj: |
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142 |
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143 The LoCosto version uses a function (implemented in l1_func.c in |
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144 the LoCosto code) named l1_memcpy_16bit() to download patch bits |
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145 into the DSP's API RAM; the function does what the name says, and |
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146 the logic of using 16-bit accesses when hitting this API RAM makes |
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147 perfect sense to me (Mychaela). The original TCS211 code apparently |
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148 used plain memcpy(), which the compiler turned into its C$MEMCPY call. |
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149 |
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150 If one does a #define l1_memcpy_16bit memcpy in l1_dyn_dwl_func.c, |
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151 the resulting l1_dyn_dwl_func.obj is almost bit-identical to the |
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152 original blob: the only diff is in register allocation - the compiler's |
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153 register allocator picks a different choice of registers, but all |
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154 instructions still perfectly line up. |
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155 |
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156 For production use of our reconstructed TCS211 L1 code, we have adopted |
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157 the version with l1_memcpy_16bit() - the function body itself has been |
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158 moved into l1_dyn_dwl_func.c so that l1_func.c remains a perfect match. |
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159 |
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160 l1_dyn_dwl_init.obj: |
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161 |
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162 In the TCS211 configuration without L1_GTT, there are a total of 5 |
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163 signals (aka primitives aka L1 messages) which trigger a dynamic |
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164 DSP patch download. These 5 signals are enumerated in |
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165 signal_patch_array[] in l1_dyn_dwl_afunc.c (which has been reconstructed |
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166 to a perfect match), and their total count (which should be 5) goes into |
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167 l1a.dyn_dwnld.num_of_primitives, set in l1_dyn_dwnld_initialize_var() in |
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168 l1_dyn_dwl_init.c. |
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169 |
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170 In the original blob version this num_of_primitives variable ends up |
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171 being set to 6: first set to 2, then incremented by 4. In the LoCosto |
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172 source this var is first set to 0 as they apparently have no patches |
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173 that are independent of compilation config options, and then incremented |
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174 for every enabled option. |
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175 |
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176 In our reconstruction we have made the GPRS and AMR_SCH patches and the |
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177 primitives that trigger them mandatory, and conditionalized the E2 and |
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178 AMR_MMS patches on MELODY_E2. The GPRS and AMR_MMS critters are |
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179 preinstalled by the static patch, and get pushed out by AMR_SCH and E2, |
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180 respectively. Of the 5 primitives listed in signal_patch_array[] in |
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181 the original blob, the first 2 are always-present core ones, whereas |
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182 the last 3 are specific to E2. The AMR_MMS patch is reinstated upon |
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183 L1_BACK_MELODY_E2_UNLOAD_INSTRUMENT_CON. |
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184 |
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185 Based on the above reasoning, our reconstructed version sets |
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186 l1a.dyn_dwnld.num_of_primitives to 5 in the full configuration: first |
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187 sets to 2, then increments by 3. If one makes a sans-MELODY_E2 build, |
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188 only the GPRS and AMR_SCH patches will be retained, and only the two |
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189 non-E2 primitives for entry into and exit from dedicated mode. |
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190 |
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191 l1audio_async.obj: |
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192 |
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193 The only bit diff is in register allocation - the compiler's register |
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194 allocator picks a different choice of registers, but all instructions |
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195 still perfectly line up. There is also a slight diff in the symbolic |
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196 metadata emitted for functions, which might be related to the diff in |
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197 the register allocation. |
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198 |
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199 The root cause of these diffs could not be found, but there is no |
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200 functional difference as only some in-function temporary registers |
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201 have been interchanged. |
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202 |
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203 l1audio_cust.obj: |
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204 |
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205 The original blob version has these demo/test functions at the end of |
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206 the module: |
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207 |
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208 audio_melo_e1_demo1_start() |
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209 audio_melo_e1_demo1_stop() |
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210 audio_melo_e1_demo2_start() |
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211 audio_melo_e1_demo2_stop() |
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212 audio_melo_e2_load_lsi() |
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213 audio_melo_e2_demo1_start() |
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214 audio_melo_e2_demo1_stop() |
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215 audio_melo_e2_demo2_start() |
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216 audio_melo_e2_demo2_stop() |
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217 |
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218 These functions are dead code, i.e., they are not called or referenced |
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219 from anywhere else in the firmware, and the link succeeds without them |
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220 being present. These dead functions have been omitted from the |
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221 reconstructed version. The reconstruction is a perfect match otherwise. |
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222 |
288
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223 tpudrv12.obj: |
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224 |
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225 The reconstruction of this module was more of a translation of logic |
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226 from disassembly to C than adaptation of source from other versions, |
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227 hence it is not a bit-for-bit match or even close. However, the logic |
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228 has been carefully verified and confirmed to match the original; see |
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229 chipsetsw/layer1/tpu_drivers/source0/tpudrv12.notes for the details. |