FreeCalypso > hg > freecalypso-sw
annotate gsm-fw/L1/stand/README @ 869:4cf69e1c784c
rvinterf/include/pktmux.h: assigned channel IDs for AT and EXTUI
| author | Space Falcon <falcon@ivan.Harhan.ORG> | 
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| date | Fri, 29 May 2015 05:13:47 +0000 | 
| parents | 4d40f9a99445 | 
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| rev | line source | 
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gsm-fw/L1/stand: starting work on our version of standalone L1
 Michael Spacefalcon <msokolov@ivan.Harhan.ORG> parents: diff
changeset | 1 In their internal development environment, TI had a way to build L1 standalone, | 
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gsm-fw/L1/stand: starting work on our version of standalone L1
 Michael Spacefalcon <msokolov@ivan.Harhan.ORG> parents: diff
changeset | 2 i.e., omitting the G23 protocol stack and other large and complex pieces of the | 
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gsm-fw/L1/stand: starting work on our version of standalone L1
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changeset | 3 full firmware. Such an ability is essential for sane development, and the | 
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gsm-fw/L1/stand: starting work on our version of standalone L1
 Michael Spacefalcon <msokolov@ivan.Harhan.ORG> parents: diff
changeset | 4 abundant references to OP_L1_STANDALONE throughout the codebase confirm that TI | 
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gsm-fw/L1/stand: starting work on our version of standalone L1
 Michael Spacefalcon <msokolov@ivan.Harhan.ORG> parents: diff
changeset | 5 had it indeed. | 
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changeset | 6 | 
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gsm-fw/L1/stand: starting work on our version of standalone L1
 Michael Spacefalcon <msokolov@ivan.Harhan.ORG> parents: diff
changeset | 7 However, we (FreeCalypso) don't have a way to build an OP_L1_STANDALONE image | 
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gsm-fw/L1/stand: starting work on our version of standalone L1
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changeset | 8 exactly the way TI did it - we don't have all of the necessary source - the | 
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gsm-fw/L1/stand: starting work on our version of standalone L1
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changeset | 9 glue pieces specific to this configuration are missing. Nor do we necessarily | 
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gsm-fw/L1/stand: starting work on our version of standalone L1
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changeset | 10 need to imitate what TI did in this department: it appears that TI's standalone | 
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changeset | 11 L1 build omitted GPF (with the exception of OS and OSX) and everything that | 
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changeset | 12 lives in Riviera land, but for us the situation is different: we already have | 
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changeset | 13 a successful build with Riviera and GPF, but no L1, thus we simply need to add | 
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changeset | 14 L1 to what we have. Our idea of standalone L1 simply means building without | 
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gsm-fw/L1/stand: starting work on our version of standalone L1
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changeset | 15 the G23 stack, which we have yet to begin integrating. | 
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changeset | 16 | 
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 Michael Spacefalcon <msokolov@ivan.Harhan.ORG> parents: diff
changeset | 17 In the standard firmware build, there is a component called L1 PEI. It is part | 
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gsm-fw/L1/stand: starting work on our version of standalone L1
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changeset | 18 of the G23 stack, and has header and library dependencies of the latter - thus | 
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changeset | 19 it is *not* part of the L1 code proper. However, it performs some essential | 
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changeset | 20 initialization steps, and runs the L1A task. We don't know how TI handled | 
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 Michael Spacefalcon <msokolov@ivan.Harhan.ORG> parents: diff
changeset | 21 these functions in their standalone L1 build - we don't have that part of their | 
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changeset | 22 source, not even in the otherwise complete LoCosto version, not even if we were | 
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changeset | 23 targeting LoCosto hardware. | 
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changeset | 24 | 
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 Michael Spacefalcon <msokolov@ivan.Harhan.ORG> parents: diff
changeset | 25 Our solution: we are going to lift l1_pei out of LoCosto's g23m-gsm, and hack | 
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changeset | 26 up a special version of it that won't have the standard complement of G23 | 
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changeset | 27 header and library dependencies. It is virtually certain that TI did something | 
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changeset | 28 different, but our hack-solution should work for our needs. | 
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changeset | 29 | 
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changeset | 30 Because our standalone L1 build is a specially stripped-down version of the | 
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 Michael Spacefalcon <msokolov@ivan.Harhan.ORG> parents: diff
changeset | 31 regular fw build, and not at all like TI's standalone L1, we do NOT define | 
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changeset | 32 OP_L1_STANDALONE. Instead we have a different preprocessor symbol: | 
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changeset | 33 CONFIG_L1_STANDALONE. | 
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changeset | 34 | 
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changeset | 35 The standard version of l1_pei calls vsi_c_open() to get queue handles of | 
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changeset | 36 several G23 stack entities; it connects by name to "PL", "MMI", and if GPRS is | 
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changeset | 37 enabled, also to "GRR", "LLC" and "SND". If we leave these connect-by-name | 
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changeset | 38 calls unchanged in our L1 standalone version, our pei_init() will always return | 
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changeset | 39 PEI_ERROR and never successfully initialize, which would not be very useful. | 
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changeset | 40 If we removed these vsi_c_open() calls and the associated OSX queue setup, the | 
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changeset | 41 first osx_send_prim() addressed to the queue in question will crash, so that | 
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changeset | 42 approach wouldn't be useful either. | 
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changeset | 43 | 
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changeset | 44 What we would like to do is redirect all outbound messages emitted by our | 
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changeset | 45 standalone L1 to the debug serial interface, using GPF's TST entity, just as if | 
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changeset | 46 an L1 REDIRECT or DUPLICATE command was given to a complete GSM fw image. | 
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changeset | 47 However, simply connecting our queues to TST won't work, as TST is not designed | 
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changeset | 48 to receive "internal" protocol stack primitives directly. When the routing | 
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changeset | 49 facility is used to DUPLICATE or REDIRECT a prim to an external entity, the | 
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changeset | 50 code in gpf/frame/route.c sends a special "wrapper" prim to TST, and we need to | 
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changeset | 51 replicate this wrapping in order to achieve the same effect. | 
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changeset | 52 | 
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changeset | 53 Our solution: we are going to construct a special forwarder entity called L1IF, | 
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changeset | 54 and the connect-by-name calls in l1_pei which normally point to PL, MMI etc | 
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changeset | 55 will point to L1IF instead. L1IF will run in the passive body variant, and its | 
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changeset | 56 pei_primitive() function will replicate the routing facility's logic for | 
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changeset | 57 forwarding PS primitives to TST. Whew! | 
