mirror of
https://github.com/matrix-construct/construct
synced 2024-11-29 18:22:50 +01:00
484 lines
11 KiB
C++
484 lines
11 KiB
C++
// The Construct
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//
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// Copyright (C) The Construct Developers, Authors & Contributors
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// Copyright (C) 2016-2020 Jason Volk <jason@zemos.net>
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//
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// Permission to use, copy, modify, and/or distribute this software for any
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// purpose with or without fee is hereby granted, provided that the above
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// copyright notice and this permission notice is present in all copies. The
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// full license for this software is available in the LICENSE file.
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#define HAVE_IRCD_SPIRIT_GENERATE_H
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/// This file is not part of the IRCd standard include list (stdinc.h) because
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/// it involves extremely expensive boost headers for creating formal spirit
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/// grammars. This file is automatically included in the spirit.h group.
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#ifdef __clang__
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#define IRCD_SPIRIT_GSPTR_LINKAGE static
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#else
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#define IRCD_SPIRIT_GSPTR_LINKAGE extern
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#endif
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namespace ircd {
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namespace spirit
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__attribute__((visibility("default")))
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{
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IRCD_EXCEPTION(error, generator_error);
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IRCD_EXCEPTION(generator_error, buffer_overrun);
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constexpr size_t
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generator_buffer_size {64_KiB},
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generator_buffer_count {8};
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IRCD_SPIRIT_GSPTR_LINKAGE thread_local struct generator_state *
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generator_state;
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extern thread_local char
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generator_buffer[generator_buffer_count][generator_buffer_size];
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}}
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namespace ircd {
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namespace spirit
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__attribute__((visibility("internal")))
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{
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using prop_mask = mpl_::int_
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<
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karma::generator_properties::no_properties
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| karma::generator_properties::buffering
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| karma::generator_properties::counting
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| karma::generator_properties::tracking
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| karma::generator_properties::disabling
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>;
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using sink_type = karma::detail::output_iterator
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<
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char *, prop_mask, unused_type
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>;
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template<bool truncation = false,
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class gen,
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class... attr>
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bool generate(mutable_buffer &out, gen&&, attr&&...);
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}}
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/// This structure is a shadow for the default spirit::karma buffering
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/// stack. They conduct buffering by allocating and copying standard strings
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/// to implement certain karma directives like "right_align[]" etc. Instead
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/// we reimplement optimized buffering with assumptions specific to our
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/// application's tolerances. We assume a maximum size of a buffer and maximum
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/// height of any stack growing from an ircd::spirit::generate() call without
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/// need for reentrancy. This gives us the ability to pre-allocate thread_local
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/// buffers.
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struct [[gnu::visibility("hidden")]]
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ircd::spirit::generator_state
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{
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/// The number of instances stacked behind the current state. This should
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/// never be greater than the generator_buffer_count
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static uint depth() noexcept;
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/// Destination buffer for this level of the stack. For depth=0 this will
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/// be the user's buffer, otherwise it will be the thread-local generator
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/// buffer at depth - 1.
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///
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/// N.B. The `begin()` of this buffer will be advanced by spirit when the
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/// depth=0 as part of the output iterator process. It is never touched when
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/// depth>0 because it directly refers to one of the static buffers.
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mutable_buffer &out;
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/// Previous in buffer stack. This is null for the instance created in the
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/// frame for ircd::spirit::generate(), which is the base of the stack.
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struct generator_state *prev {nullptr};
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/// The number of characters we're storing in buffer at `out`. When
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/// `depth>0` this will be the number of characters stored in one of the
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/// static buffers between `begin(out), begin(out)+consumed` and safely
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/// saturates at the maximum size of the buffer. When `depth=0` this
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/// indicates the number of characters *behind* `begin(out)` it still
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/// safely saturates at the maximum size of the user's buffer.
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uint consumed {0};
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/// The number of characters attempted, which may be larger than the buffer
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/// capacity and value stored in `consumed`. Thus the difference between
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/// generated and consumed is an overflow value which estimates the number
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/// of characters which would've been required for the generation.
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uint generated {0};
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};
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template<bool truncation,
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class gen,
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class... attr>
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[[using gnu: always_inline, gnu_inline]]
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extern inline bool
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ircd::spirit::generate(mutable_buffer &out,
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gen&& g,
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attr&&... a)
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{
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// Save the user buffer as originally provided in case we need to restore it.
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const mutable_buffer user
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{
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out
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};
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// Base instance for the buffering stack (see `struct generator_state`).
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struct generator_state state
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{
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out
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};
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// Set the thread-local generator_state pointer to our stack instance. This
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// will cooperatively restore whatever value was previously there, though
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// it should be null.
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assert(!generator_state);
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const scope_restore _state
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{
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generator_state, &state
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};
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sink_type sink
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{
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begin(out)
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};
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// Enter into `spirit::karma` to execute the generator
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const auto ret
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{
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karma::generate(sink, std::forward<gen>(g), std::forward<attr>(a)...)
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};
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// Determine if the user's buffer was enough to store the result; if not
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// there will be an overflow value.
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assert(state.generated >= state.consumed);
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const auto overflow
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{
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state.generated - state.consumed
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};
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// Compile-time branch for generators that tolerate truncation (i.e. fmt::)
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if constexpr(truncation)
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{
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begin(out) = begin(out) > end(out)? end(out): begin(out);
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assert(begin(out) <= end(out));
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return ret;
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}
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// Branch to throw an exception for generators that do not tolerate
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// truncated results (i.e. json::).
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if(unlikely(overflow || begin(out) > end(out)))
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{
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begin(out) = begin(user);
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assert(begin(out) <= end(out));
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char pbuf[2][48];
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throw buffer_overrun
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{
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"Insufficient buffer of %s; required at least %s",
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pretty(pbuf[0], iec(state.consumed)),
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pretty(pbuf[1], iec(state.generated)),
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};
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}
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assert(begin(out) >= end(out) - size(user));
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assert(begin(out) <= end(out));
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return ret;
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}
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inline uint
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ircd::spirit::generator_state::depth()
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noexcept
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{
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uint ret(0);
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for(auto p(ircd::spirit::generator_state); p; p = p->prev)
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++ret;
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return ret;
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}
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//
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// boost::spirit::karma
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//
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namespace boost::spirit::karma::detail
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{
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template<> struct enable_buffering<ircd::spirit::sink_type>;
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}
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template<>
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struct [[gnu::visibility("internal")]]
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boost::spirit::karma::detail::enable_buffering<ircd::spirit::sink_type>
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{
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uint width
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{
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0
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};
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uint depth
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{
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ircd::spirit::generator_state::depth()
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};
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ircd::mutable_buffer buffer
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{
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depth?
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ircd::spirit::generator_buffer[depth - 1]:
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data(ircd::spirit::generator_state->out),
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depth?
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sizeof(ircd::spirit::generator_buffer[depth - 1]):
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size(ircd::spirit::generator_state->out),
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};
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struct ircd::spirit::generator_state state
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{
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buffer, ircd::spirit::generator_state
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};
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ircd::scope_restore<struct ircd::spirit::generator_state *> stack_state
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{
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ircd::spirit::generator_state, std::addressof(state)
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};
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std::size_t buffer_size() const
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{
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return state.generated;
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}
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template<typename OutputIterator>
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bool buffer_copy_to(OutputIterator& sink, std::size_t maxwidth = std::size_t(-1)) const = delete;
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template<typename RestIterator>
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bool buffer_copy_rest(RestIterator& sink, std::size_t start_at = 0) const = delete;
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bool buffer_copy(std::size_t maxwidth = std::size_t(-1));
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void disable();
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enable_buffering(ircd::spirit::sink_type &sink, std::size_t width = std::size_t(-1));
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~enable_buffering() noexcept;
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};
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inline
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boost::spirit::karma::detail::enable_buffering<ircd::spirit::sink_type>::enable_buffering(ircd::spirit::sink_type &sink,
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std::size_t width)
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:width
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{
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uint(width)
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}
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{
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assert(size(buffer) != 0);
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assert(this->depth <= 8);
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}
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inline
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boost::spirit::karma::detail::enable_buffering<ircd::spirit::sink_type>::~enable_buffering()
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noexcept
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{
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assert(ircd::spirit::generator_state == &state);
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//disable();
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}
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inline void
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boost::spirit::karma::detail::enable_buffering<ircd::spirit::sink_type>::disable()
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{
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const auto width
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{
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this->width != -1U? this->width: state.consumed
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};
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const uint off
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{
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width > state.consumed? width - state.consumed: 0U
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};
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const ircd::const_buffer src
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{
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state.out, state.consumed
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};
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const ircd::mutable_buffer dst
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{
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state.out + off
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};
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const auto moved
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{
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ircd::move(dst, src)
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};
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assert(moved == state.consumed);
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state.consumed = !off? state.consumed: 0U;
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}
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inline bool
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boost::spirit::karma::detail::enable_buffering<ircd::spirit::sink_type>::buffer_copy(std::size_t maxwidth)
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{
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assert(state.prev);
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auto &prev
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{
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*state.prev
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};
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const bool prev_base
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{
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prev.prev == nullptr
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};
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const auto width
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{
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this->width != -1U?
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this->width:
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state.consumed
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};
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const auto dst_disp
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{
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prev_base?
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-ssize_t(state.consumed):
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ssize_t(prev.consumed)
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};
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const auto dst_over
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{
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std::begin(prev.out) > std::end(prev.out)?
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std::distance(std::end(prev.out), std::begin(prev.out)):
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0L
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};
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const auto dst_size
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{
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prev_base?
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std::max(state.consumed - dst_over, 0L):
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size(prev.out) - prev.consumed
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};
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const ircd::mutable_buffer dst
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{
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data(prev.out) + dst_disp, dst_size
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};
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const ircd::const_buffer src
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{
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state.out, std::max(state.consumed, width)
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};
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const auto copied
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{
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ircd::copy(dst, src)
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};
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prev.generated += state.generated;
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prev.consumed += copied;
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return true; // sink.good();
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}
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template<>
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inline bool
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boost::spirit::karma::detail::buffering_policy::output(const char &value)
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{
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assert(ircd::spirit::generator_state);
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auto &state
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{
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*ircd::spirit::generator_state
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};
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const bool buffering
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{
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this->buffer != nullptr
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};
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const bool base
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{
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state.prev == nullptr
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};
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const uint off
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{
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ircd::boolmask<uint>(!base | buffering) & state.consumed
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};
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const auto dst
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{
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state.out + off
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};
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const auto copied
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{
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ircd::copy(dst, value)
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};
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state.consumed += copied;
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state.generated += sizeof(char);
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return !buffering;
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}
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template<>
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inline void
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boost::spirit::karma::detail::position_policy::output(const char &value)
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{
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}
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#if 0
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template<>
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template<>
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inline void
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boost::spirit::karma::detail::counting_policy<ircd::spirit::sink_type>::output(const char &value)
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{
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assert(count == nullptr);
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}
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#endif
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template<>
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template<>
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inline bool
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boost::spirit::karma::detail::disabling_output_iterator
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<
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boost::spirit::karma::detail::buffering_policy,
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boost::spirit::karma::detail::counting_policy<ircd::spirit::sink_type>,
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boost::spirit::karma::detail::position_policy
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>
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::output(const char &value)
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{
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assert(do_output);
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this->counting_policy::output(value);
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this->tracking_policy::output(value);
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return this->buffering_policy::output(value);
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}
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template<>
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template<>
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inline void
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ircd::spirit::sink_type::operator=(const char &value)
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{
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this->base_iterator::output(value);
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}
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template<>
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inline ircd::spirit::sink_type &
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ircd::spirit::sink_type::operator++()
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{
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const bool has_buffer
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{
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this->base_iterator::has_buffer()
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};
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(*sink) += !has_buffer;
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return *this;
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}
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template<>
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inline ircd::spirit::sink_type
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ircd::spirit::sink_type::operator++(int)
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{
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auto copy(*this);
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++(*this);
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return copy;
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}
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template<>
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inline bool
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ircd::spirit::sink_type::good()
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const
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{
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return true;
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}
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