Return-Path: Received: from smtp1.linuxfoundation.org (smtp1.linux-foundation.org [172.17.192.35]) by mail.linuxfoundation.org (Postfix) with ESMTPS id 4BA5789E for ; Thu, 30 Nov 2017 00:47:46 +0000 (UTC) X-Greylist: whitelisted by SQLgrey-1.7.6 Received: from mail-yb0-f170.google.com (mail-yb0-f170.google.com [209.85.213.170]) by smtp1.linuxfoundation.org (Postfix) with ESMTPS id 6EC03FE for ; Thu, 30 Nov 2017 00:47:45 +0000 (UTC) Received: by mail-yb0-f170.google.com with SMTP id 5so2097753ybp.4 for ; Wed, 29 Nov 2017 16:47:45 -0800 (PST) DKIM-Signature: v=1; a=rsa-sha256; c=relaxed/relaxed; d=gmail.com; s=20161025; h=mime-version:from:date:message-id:subject:to; bh=o7ALQZqhvN1s8p7pSgvlG97bvWk/Gx7Q1J2wncVC1H4=; b=Nk1R8qoFJeVBjDwU5Ygr/m1kP62IO0xZ1h49DGXml5ySsCyCT3v6QK/7iAKq8uEFzA 6lXOUHeJayTNMuPLuKBhkWYJ/udaEKLUaCdpPPRuSFI8BMp3viREm/o8p4/CNaUU2s+w uamWRpuxhHzRT1fikCy9rlpF64bgZE5H9dRI2TsfJ24s1ADADgBbrduj0BGHbzE6JFpm y1q8ii+xlMKhGUMp0gXW9xvqUJYwDiZA+Lc5NoiK1y0gcZ2cwntEsyJlvPklSTvsMzsb T2M/H1KGSwW5Cew0INm6s5uNtcZlmvmP/nMybu0hs8zln+ts+phJQsmLwLDwX0rG3Upk Awug== X-Google-DKIM-Signature: v=1; a=rsa-sha256; c=relaxed/relaxed; d=1e100.net; s=20161025; h=x-gm-message-state:mime-version:from:date:message-id:subject:to; bh=o7ALQZqhvN1s8p7pSgvlG97bvWk/Gx7Q1J2wncVC1H4=; b=qHXMo0Wltv4/iDtEoajKU5qQzcp7oTnSzqvfJMgXNaUq6lWbWkT3N8z/+ea5IvyAe/ RS5gmdUG5BLpwcaz/jLzPd5m6HIz8TY18bF7AN90am65kzW0NWi6dMDYeB5H0O1Cw9/L q0eNpTwktuWtFeXYWnDM1cot6VbNUGtbarjmX4s6rK1ceDNlDwYdpvVzAv3sZsLKPkHH MdUoUNJ0FAgo/uaPIY4wTZyyYlyo68XohgGA9iBvXBDn3wg9fF8BEdJqH6VLwxEu1jEN prq5GGKGSivrS9fCRm91iqYOU5LhwyYC1hWYDva4z98/9MpRHBly9DYktmjSC0LrNzuv EFQQ== X-Gm-Message-State: AJaThX44cX76B8f9/h87FXe1ju4u76j4Dz6uSDibkHEYFXP0ZOqcmHid /PDDB7F4tilmjFR0o59jpJb02fmc5QE9eZJjnZY= X-Google-Smtp-Source: AGs4zMY67zXSPnNuLuY+4Xy9iM7e+4xvKisFNmmnoFjqwhEJkS0u2KVw0dtkqW7aifJB8kXRJ1i6rCQA9CobvNz38Fs= X-Received: by 10.37.139.131 with SMTP id j3mr459482ybl.295.1512002864048; Wed, 29 Nov 2017 16:47:44 -0800 (PST) MIME-Version: 1.0 Received: by 10.37.43.195 with HTTP; Wed, 29 Nov 2017 16:47:43 -0800 (PST) From: William Morriss Date: Wed, 29 Nov 2017 16:47:43 -0800 Message-ID: To: bitcoin-dev@lists.linuxfoundation.org Content-Type: multipart/related; boundary="f40304385a449daa94055f28992d" X-Spam-Status: No, score=-2.0 required=5.0 tests=AC_DIV_BONANZA,BAYES_00, DKIM_SIGNED, DKIM_VALID, DKIM_VALID_AU, FREEMAIL_FROM, HTML_IMAGE_RATIO_08, HTML_MESSAGE,RCVD_IN_DNSWL_NONE autolearn=ham version=3.3.1 X-Spam-Checker-Version: SpamAssassin 3.3.1 (2010-03-16) on smtp1.linux-foundation.org X-Mailman-Approved-At: Thu, 30 Nov 2017 00:55:35 +0000 Subject: [bitcoin-dev] BIP Idea: Marginal Pricing X-BeenThere: bitcoin-dev@lists.linuxfoundation.org X-Mailman-Version: 2.1.12 Precedence: list List-Id: Bitcoin Protocol Discussion List-Unsubscribe: , List-Archive: List-Post: List-Help: List-Subscribe: , X-List-Received-Date: Thu, 30 Nov 2017 00:47:46 -0000 --f40304385a449daa94055f28992d Content-Type: multipart/alternative; boundary="f40304385a449daa92055f28992c" --f40304385a449daa92055f28992c Content-Type: text/plain; charset="UTF-8" Content-Transfer-Encoding: quoted-printable Comrades, Long term, tx fees must support hash power by themselves. The following is an economic approach to maximize total fee collection, and therefore hashpower. *Goals* Maximize total transaction fees Reduce pending transaction time Reduce individual transaction fees *Challenges* Validators must agree on the maximum block size, else miners can cheat and include extra transactions. Allowing too many transactions per block will increase the cost of the mining without collecting much income for the network. *Problem* In the transaction market, users are the demand curve, because they will transact less when fees are higher, and prefer altcoins. The block size is the supply curve, because it represents miners' willingness to accept transactions. Currently, the supply curve is inelastic: =E2=80=8BIncreasing the block size will not affect the inelasticity for any= fixed block size. The downsides of a fixed block size limit are well-known: - Unpredictable transaction settlement time - Variable transaction fees depending on network congestion - Frequent overpay *Proposal* 1. Miners implicitly choose the market sat/byte rate with the cheapest-fee transaction included in their block. Excess transaction fees are refunded to the inputs. 2. Remove the block size limit, which is no longer necessary. *Benefits* - Dynamic block size limit regulated by profit motive - Transaction fees maximized for every block - No overpay; all fees are fair =E2=80=8BMiners individually will make decisions to maximize their block-re= ward profit. Miners are incentivized to ignore low-fee transactions because they would shave the profits of their other transactions and increase their hash time. Users and services are free to bid higher transaction fees in order to reach the next block, since their excess bid will be refunded. The block size limit was added as a spam-prevention measure, but in order for an attacker to spam the network with low-fee transactions, they would have to offset the marginal cost of reducing the price with their own transaction fees. Anti-spam is thus built into the marginal system without the need for an explicit limit. Rarely, sections of the backlog would become large enough to be profitable. This means every so many blocks, lower-fee transactions would be included en masse after having been ignored long enough. Low-fee transactions thus gain a liveness property not previously enjoyed: low-fee transactions will eventually confirm. Miners targeting these transactions would be at a noteworthy disadvantage because they would be hashing a larger block. I predict that this scheme would result in two markets: a backlog market and a real-time market. Users targeting the backlog market would match the price of the largest backlog section in order to be included in the next backlog block. *Examples* Scenario 1 Sat/byte Bytes Reward 400 500000 200000000 300 700000 210000000 200 1000000 200000000 100 1500000 150000000 50 5000000 250000000 20 10000000 200000000 A miner would create a 5MB block and receive 0.25 BTC Scenario 2 Sat/byte Bytes Reward 400 600000 240000000 300 700000 210000000 200 1000000 200000000 100 1800000 180000000 50 4000000 200000000 20 10000000 200000000 A miner would create a 600KB block and receive 0.24 BTC Thanks, William Morriss --f40304385a449daa92055f28992c Content-Type: text/html; charset="UTF-8" Content-Transfer-Encoding: quoted-printable
Comrades,

Long term, tx fees must support hash= power by themselves. The following is an economic approach to maximize tot= al fee collection, and therefore hashpower.
<= div dir=3D"ltr">

Goals
Maximize total trans= action fees
Reduce pending transaction time
Reduce indivi= dual transaction fees

Challenges
<= div>Validators must agree on the maximum block size, else miners can cheat = and include extra transactions.
Allowing too many transactions pe= r block will increase the cost of the mining without collecting much income= for the network.

Problem
In the transa= ction market, users are the demand curve, because they will transact less w= hen fees are higher, and prefer altcoins. The block size is the supply curv= e, because it represents miners' willingness to accept transactions.
Currently, the supply curve is inelastic:

=E2=80= =8BIncreasing the block size will not affect the in= elasticity for any fixed block size. The downsides of a fixed block size li= mit are well-known:
- Unpredictable transaction settle= ment time
- Variable transaction fees depending on network congest= ion
- Frequent overpay

Proposal
1. Miners implicitly choose the market sat/byte rate with the cheap= est-fee transaction included in their block. Excess transaction fees are re= funded to the inputs.
2. Remove the block size limit, which is no= longer necessary.

Benefits
<= div>- Dynamic block size limit regulated by profit motive
- Trans= action fees maximized for every block
- No overpay; all fees = are fair

=E2=80=8BMiners individually will make decisions to= maximize their block-reward profit.
Miners are incenti= vized to ignore low-fee transactions because they would shave the profits o= f their other transactions and increase their hash time.
Users an= d services are free to bid higher transaction fees in order to reach the ne= xt block, since their excess bid will be refunded.

The block size limit was added as a spam-prevention measure, but in order = for an attacker to spam the network with low-fee transactions, they would h= ave to offset the marginal cost of reducing the price with their own transa= ction fees. Anti-spam is thus built into the marginal system without the ne= ed for an explicit limit.

Rarely, sections of = the backlog would become large enough to be profitable. This means every so= many blocks, lower-fee transactions would be included en masse after havin= g been ignored long enough. Low-fee transactions thus gain a liveness prope= rty not previously enjoyed: low-fee transactions will eventually confirm. M= iners targeting these transactions would be at a noteworthy disadvantage be= cause they would be hashing a larger block. I predict that this scheme woul= d result in two markets: a backlog market and a real-time market. Users tar= geting the backlog market would match the price of the largest backlog sect= ion in order to be included in the next backlog block.

Examples

Scenario 1
Sat/byte
A miner would create a 5MB block and receive 0.25 BTC
=

Scenario 2
Byte= sR= eward
400500000= 200000000
300700000210000000
2001000000200000000
1001500000150000000
5050= 00000250000000
2010000000200000000
Sat/byteBytesReward
400600000240000000
300700000210000000
2001000000200000000
100180000000
504000000200000000
2010000000200000000
A miner would create a = 600KB block and receive 0.24 BTC

Thanks,
Willia= m Morriss
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